Showing posts with label plasmas. Show all posts
Showing posts with label plasmas. Show all posts

Friday, June 11, 2010

Interesting Astrophysics: June 01 to June 11

This is the final edition of Interesting Astrophysics with me working as a professional astrophysicist, as I start a new job outside astronomy next week. If I have the spare time at home I may try to continue this series, but perhaps at a reduced rate.

Nevertheless, there is some interesting stuff to look at. Molecular gas in starbursts is the subject of the Bothwell et al, Naylor et al, and Feruglio et al papers. In terms of winds, Muzic et al discuss possible/futher evidence of a wind within the central regions of our own galaxy (I still remain somewhat sceptical that the Milky Way hosts a true galactic wind), Kobulnicky & Martin present X-ray observations of the dwarf starburst Henize 2-10, Feruglio et al claim there is a hugely energetic molecular outflow in Markarian 231 that can only be power by an AGN, and Fischer discuss the geometry of the outflow in the central kiloparsec of the Seyfert 2 galaxy Mrk 573. Randall Smith and collaborators have posted two interesting X-ray line diagnostics papers, for all your X-ray spectroscopists out there.


Galaxies and Starbursts

AKARI infrared observations of edge-on spiral galaxy NGC 3079
Mitsuyoshi Yamagishi, Hidehiro Kaneda, Daisuke Ishihara, Shinya Komugi, Takashi Onaka, Toyoaki Suzuki, arXiv:1005.5251 [pdf, ps, other]
Comments: 15 pages, 7 figures, accepted for publication in PASJ

High-resolution CO and radio imaging of ULIRGs: extended CO structures and implications for the universal star formation law
M. S. Bothwell, S. C. Chapman, L. Tacconi, Ian Smail, R. J. Ivison, C. M. Casey, F. Bertoldi, R. Beswick, A. Biggs, A. W. Blain, P. Cox, R. Genzel, T. R. Greve, R. Kennicutt, T. Muxlow, R. Neri, A. Omont, 2010, MNRAS, 405, 219
Full Text: HTML, PDF (Size: 1391K)

From their abstract: "We find a difference in size between the CO and radio emission regions, and as such we suggest that using the spatial extent of the CO emission region to estimate the surface density of star formation may lead to error. This size difference also causes the star formation efficiencies within systems to vary by up to a factor of 5. We also find, with our new accurate sizes, that SMGs lie significantly above the KS relation, indicating that stars are formed more efficiently in these extreme systems than in other high- z star-forming galaxies."


A Census of the High-Density Molecular Gas in M82
B. J. Naylor, C. M. Bradford, J. E. Aguirre, J. J. Bock, L. Earle, J. Glenn, H. Inami, J. Kamenetzky, P. R. Maloney, H. Matsuhara, H. T. Nguyen, J. Zmuidzinas, arXiv:1006.1964 [pdf, ps, other]
Comments: 15 pages (using emulateapj.cls), 6 figures, submitted to the Astrophysical Journal

From their abstract: "We present a three-pointing study of the molecular gas in the starburst nucleus of M82 based on 190 - 307 GHz spectra obtained with Z-Spec at the Caltech Submillimeter Observatory. We measure intensities or upper-limits for 20 transitions, including several new detections of CS, HNC, C2H, H2CO and CH3CCH lines. We combine our measurements with previously-published measurements at other frequencies for HCN, HNC, CS, C34S, and HCO+ in a multi-species likelihood analysis constraining gas mass, density and temperature, and the species' relative abundances. We find some 1.7 - 2.7 x 10^8 M_sun of gas with n_H2 between 1 - 6 x 10^4 cm^-3 and T > 50 K. While the mass and temperature are comparable to values inferred from mid-J CO transitions, the thermal pressure is a factor of 10 - 20 greater."

Their median thermal pressure estimate P/k ~ 106.4 K cm-3 for the molecular gas, is a little lower than our (Strickland & Heckman 2009) estimates for the very hot gas in the starburst (P/k ~107), but for astrophysical work that's actually pretty close - its certainly closer than some other estimates in the literature. Nor would I expect the molecular gas to be in exact thermal pressure equilibrium with the hot gas.

Cometary shaped sources at the Galactic Center - Evidence for a wind from the central 0.2 pc
K. Muzic, A. Eckart, R. Schoedel, R. Buchholz, M. Zamaninasab, arXiv:1006.0909 [pdf, other]
Comments: to appear in A&A

Abstract in full: "In 2007 we reported two cometary shaped sources in the vicinity of Sgr A* (0.8" and 3.4" projected distance), named X7 and X3. The symmetry axes of the two sources are aligned to within 5 degrees in the plane of the sky and the tips of their bow-shocks point towards Sgr A*. Our measurements show that the proper motion vectors of both features are pointing in directions more than 45 deg away from the line that connects them with Sgr A*. This misalignment of the bow-shock symmetry axes and their proper motion vectors, combined with the high proper motion velocities of several 100 km/s, suggest that the bow-shocks must be produced by an interaction with some external fast wind, possibly coming from Sgr A*, or stars in its vicinity. We have developed a bow-shock model to fit the observed morphology and constrain the source of the external wind. The result of our modeling allows us to estimate the velocity of the external wind, making sure that all likely stellar types of the bow-shock stars are considered. We show that neither of the two bow-shocks (one of which is clearly associated with a stellar source) can be produced by influence of a stellar wind of a single mass-losing star in the central parsec. Instead, an outflow carrying a momentum comparable to the one contributed by the ensemble of the massive young stars, can drive shock velocities capable of producing the observed cometary features. We argue that a collimated outflow arising perpendicular to the plane of the clockwise rotating stars (CWS), can easily account for the two features and the mini-cavity. However, the collective wind from the CWS has a scale of >10''. The presence of a strong, mass-loaded outbound wind at projected distances from Sgr A* of <1'' is in fact in agreement with models that predict a highly inefficient accretion onto the central black hole due to a strongly radius dependent accretion flow."

Exploring the Origin and Fate of the Magellanic Stream with Ultraviolet and Optical Absorption

Andrew J. Fox, Bart P. Wakker, Jonathan V. Smoker, Philipp Richter, Blair D. Savage, Kenneth R. Sembach, arXiv:1006.0974 [pdf, ps, other]
Comments: Accepted for publication in ApJ. 18 pages, 7 figures, all in color

From their abstract: "Summing over the low-ion and high-ion phases, we derive conservative lower limits on the ratio N(total H II)/N(H I) of >19 toward NGC 7469 and >330 toward Mrk 335, showing that along these two directions the vast majority of the Stream has been ionized. The presence of warm-hot plasma together with the small-scale structure observed at 21 cm provides evidence for an evaporative interaction with the hot Galactic corona. This scenario, predicted by hydrodynamical simulations, suggests that the fate of the MS will be to replenish the Galactic corona with new plasma, rather than to bring neutral fuel to the disk."

The Diffuse and Compact X-ray Components of the Starburst Galaxy Henize~2-10
Henry A. Kobulnicky, Crystal L. Martin, arXiv:1006.1189 [pdf, ps, other]
Comments: Accepted for publication in The Astrophysical Journal; a version with high-resolution figures can be found at this http URL

From their abstract: "Chandra X-ray imaging spectroscopy of the starburst galaxy Henize 2-10 reveals a strong nuclear point source and at least two fainter compact sources embedded within a more luminous diffuse thermal component. ...Two-temperature solar-composition plasmas (kT~0.2 keV and kT~0.7 keV) fit the diffuse X-ray component as well as single-temperature plasmas with enhanced alpha/Fe ratios. Since the observed radial gradient of the X-ray surface brightness closely follows that of the Halpha emission, the composition of the X-ray plasma likely reflects mixing of the ambient cool/warm ISM with an even hotter, low emission measure plasma, thereby explaining the ~solar ISM composition. Aperture synthesis 21-cm maps show an extended neutral medium to radii of 60" so that the warm and hot phases of the ISM, which extend to ~30", are enveloped within the 8x10^20 /cm^2 contour of the cool neutral medium. This extended neutral halo may serve to inhibit a starburst-driven outflow unless it is predominantly along the line of sight. The high areal density of star formation can also be reconciled with the lack of prominent outflow signatures if Henize 2-10 is in the very early stages of developing a galactic wind."


Black Holes and AGN

Quasar feedback revealed by giant molecular outflows
Chiara Feruglio, Roberto Maiolino, Enrico Piconcelli, Nicola Menci, Herve' Aussel, Alessandra Lamastra, Fabrizio Fiore, arXiv:1006.1655 [pdf, ps, other]
Comments: Submitted for publication in A&A Letters. 4 pages, 3 figures

From their abstract: "We used the IRAM PdBI to observe the CO(1-0) transition in Mrk 231, the closest quasar known. We detect broad wings of the CO line, with velocities up to 750 km/s and spatially resolved on the kpc scale. Such broad CO wings trace a giant molecular outflow of about 2000 MSun/year, far larger than the ongoing star-formation rate (~200 MSun/year) observed in the host galaxy. This wind will totally expel the cold gas reservoir in Markarian 231 in less than 1e7 yrs, therefore halting the star-formation activity on the same timescale. The inferred kinetic energy in the molecular outflow is ~4e44 erg/s, corresponding to 7% of the AGN bolometric luminosity, which is very close to the fraction expected by models ascribing quasar feedback to highly supersonic shocks generated by radiatively accelerated nuclear winds. Instead, the contribution by the SNe fall short by orders of magnitude to account for the outflow kinetic energy."


There is going to be some skepticism about this paper in the superwind community, given the uncertainties in CO to hydrogen conversion factors. In terms of the larger scale (10+ kpc) superwind Mrk 231 is not that different from other ULIRGs with winds.

Modeling the Outflow in the Narrow-Line Region of Markarian 573: Biconical Illumination of a Gaseous Disk
T. C. Fischer, D. M. Crenshaw, S. B. Kraemer, H. R. Schmitt, M. L. Trippe, arXiv:1006.1875 [pdf]
Comments: 20 pages, 5 figures (1 color), to be published in The Astronomical Journal
Subjects: Cosmology and Extragalactic Astrophysics (astro-ph.CO)

Abstract in full: "We present a study of the outflowing ionized gas in the resolved narrow-line region (NLR) of the Seyfert 2 galaxy Mrk 573, and its interaction with an in- ner dust/gas disk, based on Hubble Space Telescope (HST) WFPC2 and STIS observations. From the spectroscopic and imaging information, we determined the fundamental geometry of the outflow and inner disk, via two modeling pro- grams used to recreate the morphology of these regions imaged with HST. We also determined that the bicone of ionizing radiation from the Active Galactic Nucleus (AGN) intersects with the inner disk, illuminating a section of the disk including inner segments of spiral arms, fully seen through structure mapping, which appear to be outflowing and expanding. In addition, we see high velocities at projected distances of \geq 2'' (- 700 pc) from the nucleus, which could be due to rotation or to in situ acceleration of gas off the spiral arms. We find that the true half opening angle of the ionizing bicone (53 degrees) is much larger than the apparent half-opening angle (34 degrees) due to the above geometry, which may apply to a number of other Seyferts as well."


X-ray Astronomy

Ionization Equilibrium Timescales in Collisional Plasmas
Randall K. Smith, John P. Hughes, arXiv:1006.0254 [pdf, ps, other]
Comments: 4 pages, 2 figures. Accepted for publication by the Astrophysical Journal

Full abstract: "Astrophysical shocks or bursts from a photoionizing source can disturb the typical collisional plasma found in galactic interstellar media or the intergalactic medium. The spectrum emitted by this plasma contains diagnostics that have been used to determine the time since the disturbing event, although this determination becomes uncertain as the elements in the plasma return to ionization equilibrium. A general solution for the equilibrium timescale for each element arises from the elegant eigenvector method of solution to the problem of a non-equilibrium plasma described by Masai (1984) and Hughes & Helfand (1985). In general the ionization evolution of an element Z in a constant electron temperature plasma is given by a coupled set of Z+1 first order differential equations. However, they can be recast as Z uncoupled first order differential equations using an eigenvector basis for the system. The solution is then Z separate exponential functions, with the time constants given by the eigenvalues of the rate matrix. The smallest of these eigenvalues gives the scale of slowest return to equilibrium independent of the initial conditions, while conversely the largest eigenvalue is the scale of the fastest change in the ion population. These results hold for an ionizing plasma, a recombining plasma, or even a plasma with random initial conditions, and will allow users of these diagnostics to determine directly if their best-fit result significantly limits the timescale since a disturbance or is so close to equilibrium as to include an arbitrarily-long time"

Hooray, it has finally appeared!


A New Calculation of Ne IX Line Diagnostics

Randall K. Smith, Guo-Xin Chen, Kate Kirby, Nancy S. Brickhouse, arXiv:1006.0667 [pdf, ps, other]
Journal-ref: 2009, ApJ, 700, 679

Their abstract: "We describe the effect that new atomic calculations, including fully-relativistic R-matrix calculations of collisional excitation rates and level-specific dielectronic and radiative recombination rates, have on line ratios from the astrophysically significant ion Ne IX. The new excitation rates systematically change some predicted Ne IX line ratios by 25% at temperatures at or below the temperature of maximum emissivity (4x10^6 K), while the new recombination rates lead to systematic changes at higher temperatures. The new line ratios are shown to agree with observations of Capella and sigma^2 CrB significantly better than older line ratios, showing that 25-30% accuracy in atomic rates is inadequate for high-resolution X-ray observations from existing spectrometers."

This paper is from last year, but worth keeping in mind.


Numerical Astrophysics and Hydrodynamics

Inviscid SPH
Lee Cullen, Walter Dehnen, arXiv:1006.1524 [pdf, ps, other]
Comments: 14 pages (15 in arXiv), 15 figures, accepted for publication in MNRAS

Abstract in full: "In smooth-particle hydrodynamics (SPH), artificial viscosity is necessary for the correct treatment of shocks, but often generates unwanted dissipation away from shocks. We present a novel method of controlling the amount of artificial viscosity, which uses the total time derivative of the velocity divergence as shock indicator and aims at completely eliminating viscosity away from shocks. We subject the new scheme to numerous tests and find that the method works at least as well as any previous technique in the strong-shock regime, but becomes virtually inviscid away from shocks, while still maintaining particle order. In particular sound waves or oscillations of gas spheres are hardly damped over many periods."


Stars, Supernovae and Planets

Atmospheric mass loss by stellar wind from planets around main sequence M stars
Jesus Zendejas, Antigona Segura, Alejandro Raga, arXiv:1006.0021 [pdf, ps, other]
Comments: Icarus, submitted. 18 pages, 6 figures

They conclude that for late type M dwarfs (later than M5),most planets within the habitable zone may have lost their atmospheres in 1 Gyr or less.

The Evolution of Cloud Cores and the Formation of Stars
Avery E. Broderick, Eric Keto, arXiv:1006.0733 [pdf, ps, other]
Comments: 12 pages, 7 figures, submitted to ApJ

Friday, May 28, 2010

Interesting Astrophysics: 17 May to 28 May

The final batch of interesting preprints (and a few accepted papers) for May 2010.


Galaxies and Starbursts

Witnessing the Formation of a Brightest Cluster Galaxy in a Nearby X-ray Cluster
Jesper Rasmussen, John S. Mulchaey, Lei Bai, Trevor J. Ponman, Somak Raychaudhury, Ali Dariush, arXiv:1005.3538 [pdf, ps, other]
Comments: 16 pages, 12 figures. ApJ accepted

UV+IR Star Formation Rates: Hickson Compact Groups with Swift and Spitzer
P. Tzanavaris, A. E. Hornschemeier, S. C. Gallagher, K. E. Johnson, C. Gronwall, S. Immler, A. E. Reines, E. Hoversten, J. C. Charlton, arXiv:1005.4059 [pdf, ps, other]
Comments: Accepted by ApJ. [8 Tables, 16 Figures. Color figures have reduced size for ArXiv - emulateapj v. 2/16/10]
Journal-ref: Astrophysical Journal 716 (2010) 556-573

From their abstract: "We present Swift UVOT (1600-3000A) 3-band photometry for 41 galaxies in 11 nearby (<4500km/s) Hickson Compact Groups (HCGs) of galaxies. We use the uvw2-band (2000A) to estimate the dust-unobscured component, SFR_UV, of the total star-formation rate, SFR_T. We use Spitzer MIPS 24-micron photometry to estimate SFR_IR, the dust-obscured component of SFR_T. We obtain SFR_T=SFR_UV+SFR_IR. Using 2MASS K_s band based stellar mass, M*, estimates, we calculate specific SFRs, SSFR=SFR_T/M*. SSFR values show a clear and significant bimodality, with a gap between low (<~3.2x10^-11 / yr) and high SSFR (>~1.2x10^-10 / yr) systems. All galaxies with MIR activity index a_IRAC <= 0 (>0) are in the high- (low-) SSFR locus, as expected if high levels of star-formation power MIR emission from polycyclic aromatic hydrocarbon molecules and a hot dust continuum. All elliptical/S0 galaxies are in the low-SSFR locus, while 22 out of 24 spirals/irregulars are in the high-SSFR locus, with two borderline cases. ... Unlike HCG galaxies, galaxies in a comparison quiescent SINGS sub-sample are continuously distributed both in SSFR and a_IRAC. Any uncertainties can only further enhance the SSFR bimodality. These results suggest that an environment characterized by high galaxy number-densities and low galaxy velocity-dispersions, such as the one found in compact groups, plays a key role in accelerating galaxy evolution by enhancing star-formation processes in galaxies and favoring a fast transition to quiescence."

Radiation pressure from massive star clusters as a launching mechanism for super-galactic winds
Norman Murray, Brice Ménard, Todd A. Thompson, arXiv:1005.4419 [pdf, ps, other]
Comments: Submitted to ApJ, comments welcome
Subjects: Cosmology and Extragalactic Astrophysics (astro-ph.CO); Galaxy Astrophysics (astro-ph.GA)

Their abstact: "Galactic outflows of low ionization, cool gas are ubiquitous in local starburst galaxies, and in the majority of galaxies at high redshift. How these cool outflows arise is still in question. Hot gas from supernovae has long been suspected as the primary driver, but this mechanism suffers from its tendency to destroy the cool gas as the latter is accelerated. We propose a modification of the supernova scenario that overcomes this difficulty.
Star formation is observed to take place in clusters; in a given galaxy, the bulk of the star formation is found in the ~20 most massive clusters. We show that, for L* galaxies, the radiation pressure from clusters with M>10^6 M_sun is able to expel the surrounding gas at velocities in excess of the circular velocity of the disk galaxy. This cool gas can travel above the galactic disk in less than 2 Myr, well before any supernovae erupt in the driving cluster. Once above the disk, the cool outflowing gas is exposed to radiation, and supernovae induced hot gas outflows, from other clusters in the disk, which drive it to distances of several tens to hundreds of kpc. Because the radiatively driven clouds grow in size as they travel, and because the hot gas is more dilute at large distance, the clouds are less subject to destruction if they do eventually encounter hot gas. Therefore, unlike wind driven clouds, radiatively driven clouds can survive to distances ~50 kpc. We identify these cluster-driven winds with large-scale galactic outflows. Another implication of our model is that only starburst galaxies, where massive clusters reside, are able to drive winds cold outflows on galactic scales via this mechanism. We find that the critical star formation rates above which large scale cool outflows will be launched to be ~0.1 M_sun/yr/kpc^2, which is in good agreement with observations."


I can see a quite a few problems with this line of argumentation. Hopefully I'll get around to addressing them in the monster paper I'm still adding to. Why write three papers when you can just write one absurdly large one?


Black Holes and AGN

"Comets" orbiting a black hole
R. Maiolino, G. Risaliti, M. Salvati, P. Pietrini, G. Torricelli-Ciamponi, M. Elvis, G. Fabbiano, V. Braito, J. Reeves, arXiv:1005.3365 [pdf, ps, other]
Comments: Accepted for publication in A&A. 11 pages, 9 figures

Their abstract: "We use a long (300 ksec), continuous Suzaku X-ray observation of the active nucleus in NGC1365 to investigate the structure of the circumnuclear BLR clouds through their occultation of the X-ray source. The variations of the absorbing column density and of the covering factor indicate that the clouds surrounding the black hole are far from having a spherical geometry (as sometimes assumed), instead they have a strongly elongated and cometary shape, with a dense head (n=10^11 cm^-3) and an expanding, dissolving tail. We infer that the cometary tails must be longer than a few times 10^13 cm and their opening angle must be smaller than a few degrees. We suggest that the cometary shape may be a common feature of BLR clouds in general, but which has been difficult to recognize observationally so far. The cometary shape may originate from shocks and hydrodynamical instabilities generated by the supersonic motion of the BLR clouds into the intracloud medium. As a consequence of the mass loss into their tail, we infer that the BLR clouds probably have a lifetime of only a few months, implying that they must be continuously replenished. We also find a large, puzzling discrepancy (two orders of magnitude) between the mass of the BLR inferred from the properties of the absorbing clouds and the mass of the BLR inferred from photoionization models; we discuss the possible solutions to this discrepancy."

Adaptive optics near infrared integral field spectroscopy of NGC 2992
S. Friedrich, R. I. Davies, E. K. S. Hicks, H. Engel, F. Müller-Sánchez, R. Genzel, L. J. Tacconi, arXiv:1005.4791 [pdf, ps, other]
Comments: 10 pages, 8 figures, accepted for publication in A&amp;A

From their abstract: "NGC 2992 is an intermediate Seyfert 1 galaxy showing outflows on kilo parsec scales which might be due either to AGN or starburst activity. We therefore aim at investigating its central region for a putative starburst in the past and its connection to the AGN and the outflows. Observations were performed with the adaptive optics near infrared integral field spectrograph SINFONI on the VLT, complemented by longslit observations with ISAAC on the VLT, as well as N- and Q-band data from the Spitzer archive. The spatial and spectral resolutions of the SINFONI data are 50 pc and 83 km/s, respectively. ... A simple geometric model of two mutually inclined disks and an additional cone to describe an outflow was developed to explain the observed complex velocity field in H_2 1-0S(1). ... We find a starburst age of 40 Myr - 50 Myr from Br_gamma line diagnostics and the radio continuum; ongoing star formation can be excluded. Both the energetics and the timescales indicate that the outflows are driven by the AGN rather than the starburst. The complex velocity field observed in H_2 1-0S(1) in the central 450 pc can be explained by the superposition of the galaxy rotation and an outflow."


So, the questions remains - is there really an outflow on larger scales too?. The lack of clear cases of purely AGN-driven large scale winds really makes me doubt radiation-driven wind models.


Fading hard X-ray emission from the Galactic Centre molecular cloud Sgr B2
R. Terrier, G. Ponti, G. Belanger, A. Decourchelle, V. Tatischeff, A. Goldwurm, G. Trap, M. R. Morris, R. Warwick, arXiv:1005.4807 [pdf, ps, other]
Comments: Accepted for publication in ApJ. 10 pages, 5 figures

From their abstract: "The centre of our Galaxy harbours a 4 million solar mass black hole that is unusually quiet: its present X-ray luminosity is more than 10 orders of magnitude less than its Eddington luminosity. The observation of iron fluorescence and hard X-ray emission from some of the massive molecular clouds surrounding the Galactic Centre has been interpreted as an echo of a past flare. ... Here we report the observation of a clear decay of the hard X-ray emission from the molecular cloud Sgr B2 during the past 7 years thanks to more than 20 Ms of INTEGRAL exposure. The measured decay time is compatible with the light crossing time of the molecular cloud core . Such a short timescale rules out inverse bremsstrahlung by cosmic-ray ions as the origin of the X ray emission. We also obtained 2-100 keV broadband X-ray spectra by combining INTEGRAL and XMM-Newton data and compared them with detailed models of X-ray emission due to irradiation of molecular gas by (i) low-energy cosmic-ray electrons and (ii) hard X-rays. Both models can reproduce the data equally well, but the time variability constraints and the huge cosmic ray electron luminosity required to explain the observed hard X-ray emission strongly favor the scenario in which the diffuse emission of Sgr B2 is scattered and reprocessed radiation emitted in the past by Sgr A*. Using recent parallax measurements that place Sgr B2 in front of Sgr A*, we find that the period of intense activity of Sgr A* ended between 75 and 155 years ago."


Black Hole Mass, Host galaxy classification and AGN activity
Barry McKernan, K.E.Saavik Ford, Chris Reynolds, arXiv:1005.4907 [pdf, ps, other]
Comments: MNRAS accepted. 14 pages, 11 figures, complete Table 1 in online journal


Theoretical Cosmology

The intergalactic medium over the last 10 billion years I: Lyman alpha absorption and physical conditions
Romeel Davé, Benjamin D. Oppenheimer, Neal Katz, Juna A. Kollmeier, David H. Weinberg, arXiv:1005.2421 [pdf, ps, other]
Comments: 21 pages, submitted to MNRAS

Intergalactic Dust Extinction in Hydrodynamic Cosmological Simulations
Ying Zu, David H. Weinberg, Romeel Davé, Mark Fardal, Neal Katz, Dusan Keres, Benjamin D. Oppenheimer, arXiv:1005.4406 [pdf, ps, other]
Comments: 12 pages, 7 figures, to be submitted to MNRAS


Astrophysical Processes

Secondary ionization and heating by fast electrons
Steven R. Furlanetto and Samuel Johnson Stoever, 2010, MNRAS, 404, 1869
Full Text: HTML, PDF (Size: 720K)


Numerical Astrophysics and Computational Techniques

Searchable Sky Coverage of Astronomical Observations: Footprints and Exposures
Tamas Budavari, Alex Szalay, Gyorgy Fekete, arXiv:1005.2606 [pdf, other]
Comments: 11 pages, 7 figures, submitted to PASP

Their abstract: "Sky coverage is one of the most important pieces of information about astronomical observations. We discuss possible representations, and present algorithms to create and manipulate shapes consisting of generalized spherical polygons with arbitrary complexity and size on the celestial sphere. This shape specification integrates well with our Hierarchical Triangular Mesh indexing toolbox, whose performance and capabilities are enhanced by the advanced features presented here. Our portable implementation of the relevant spherical geometry routines comes with wrapper functions for database queries, which are currently being used within several scientific catalog archives including the Sloan Digital Sky Survey, the Galaxy Evolution Explorer and the Hubble Legacy Archive projects as well as the Footprint Service of the Virtual Observatory."

The Role of Provenance Management in Accelerating the Rate of Astronomical Research

G. Bruce Berriman, Ewa Deelman, arXiv:1005.3358 [pdf, other]
Comments: 8 pages, 1 figure; Proceedings of Science, 2010

Their abstract: "The availability of vast quantities of data through electronic archives has transformed astronomical research. It has also enabled the creation of new products, models and simulations, often from distributed input data and models, that are themselves made electronically available. These products will only provide maximal long-term value to astronomers when accompanied by records of their provenance; that is, records of the data and processes used in the creation of such products. We use the creation of image mosaics with the Montage grid-enabled mosaic engine to emphasize the necessity of provenance management and to understand the science requirements that higher-level products impose on provenance management technologies. We describe experiments with one technology, the "Provenance Aware Service Oriented Architecture" (PASOA), that stores provenance information at each step in the computation of a mosaic. The results inform the technical specifications of provenance management systems, including the need for extensible systems built on common standards. Finally, we describe examples of provenance management technology emerging from the fields of geophysics and oceanography that have applicability to astronomy applications."


Montage: a grid portal and software toolkit for science-grade astronomical image mosaicking
Joseph C. Jacob, et al, arXiv:1005.4454 [pdf, other]
Comments: 16 pages, 11 figures
Journal-ref: Int. J. Computational Science and Engineering. 2009

Their abstract: "Montage is a portable software toolkit for constructing custom, science-grade mosaics by composing multiple astronomical images. The mosaics constructed by Montage preserve the astrometry (position) and photometry (intensity) of the sources in the input images. The mosaic to be constructed is specified by the user in terms of a set of parameters, including dataset and wavelength to be used, location and size on the sky, coordinate system and projection, and spatial sampling rate. Many astronomical datasets are massive, and are stored in distributed archives that are, in most cases, remote with respect to the available computational resources. Montage can be run on both single- and multi-processor computers, including clusters and grids. Standard grid tools are used to run Montage in the case where the data or computers used to construct a mosaic are located remotely on the Internet. This paper describes the architecture, algorithms, and usage of Montage as both a software toolkit and as a grid portal. Timing results are provided to show how Montage performance scales with number of processors on a cluster computer. In addition, we compare the performance of two methods of running Montage in parallel on a grid."


Stars, Supernovae and Planets

Who Pulled the Trigger: a Supernova or an AGB Star?
Alan P. Boss, Sandra A. Keiser, arXiv:1005.3981 [pdf, ps, other]
Comments: 14 pages, 4 figures, 1 table, Astrophysical Journal Letters, in press

Their abstract: "The short-lived radioisotope $^{60}$Fe requires production in a core collapse supernova or AGB star immediately before its incorporation into the earliest solar system solids. Shock waves from a somewhat distant supernova, or a relatively nearby AGB star, have the right speeds to simultaneously trigger the collapse of a dense molecular cloud core and to inject shock wave material into the resulting protostar. A new set of FLASH2.5 adaptive mesh refinement hydrodynamical models shows that the injection efficiency depends sensitively on the assumed shock thickness and density. Supernova shock waves appear to be thin enough to inject the amount of shock wave material necessary to match the short-lived radioisotope abundances measured for primitive meteorites. Planetary nebula shock waves from AGB stars, however, appear to be too thick to achieve the required injection efficiencies. These models imply that a supernova pulled the trigger that led to the formation of our solar system. "


Herschel Observations of the W43 "mini-starburst"
J. Bally, et al, arXiv:1005.4092 [pdf, ps, other]
Comments: 5 pages, 3 figures, accepted for A&amp;A Special Issue

From their abstract: "Aims: To explore the infrared and radio properties of one of the closest Galactic starburst regions. Methods: Images obtained with the Herschel Space Observatory at wavelengths of 70, 160, 250, 350, and 500 microns using the PACS and SPIRE arrays are analyzed and compared with radio continuum VLA data and 8 micron images from the Spitzer Space Telescope. ... Results: The W43 star-forming complex is resolved into a dense cluster of protostars, infrared dark clouds, and ridges of warm dust heated by massive stars. The 4 brightest compact sources with L > 1.5 x 10^4 Lsun embedded within the Z-shaped ridge of bright dust emission in W43 remain single at 4" (0.1 pc) resolution. These objects, likely to be massive protostars or compact clusters in early stages of evolution are embedded in clumps with masses of 10^3 to 10^4 Msun, but contribute only 2% to the 3.6 x 10^6 Lsun far-IR luminosity of W43 measured in a 16 by 16 pc box. The total mass of gas derived from the far-IR dust emission inside this region is ~10^6 Msun. Cometary dust clouds, compact 6 cm radio sources, and warm dust mark the locations of older populations of massive stars. Energy release has created a cavity blowing-out below the Galactic plane."

I wish people would stop calling individual star forming regions, even the biggest ones, starbursts. The term starburst has historically been used to denote significantly enhanced star formation at a galactic scale, and makes most sense when used thusly. See, e.g. Heckman, T., 2005, A&SS, 329, 3.

Evolution of massive stars with pulsation-driven superwinds during the RSG phase
Sung-Chul Yoon, Matteo Cantiello, arXiv:1005.4925 [pdf, ps, other]
Comments: Accepted for publications in ApJ Letters

Interesting to note the significance of pulsation in driving these winds. They're not just steady dust-driven winds. Are there any cases of steady dust-driven winds?

Wednesday, December 02, 2009

BBC discusses costs of ESA Cosmic Vision contenders


An article on the BBC by Jonathan Amos discusses the contenders for the two slots in ESA's Cosmic Visions program for 2017-2018 launches. Interestingly the article's focus is on the costs (see graph taken from article), but it also has a nice description of each mission (many of which I hadn't heard of).

The missions, and my shorter summary of their nature and aims, are:

  • SPICA: Joint ESA/JAXA infrared space telescope (5 to 210 micron wavelength range) with a 3.5m primary mirror.
  • Euclid: Map mass distributions using baryonic acoustic oscillations and weak lensing.
  • PLATO: A planet hunter with a particular emphasis on finding Earth-like and super-earth terrestrial planets using milli-magnitude accuracy photometry.
  • Solar Orbiter: Study the Sun and Solar wind from a relatively close-in orbit (as close as 48 Solar radii, it claims).
  • Marco Polo: Joint ESA/JAXA sample return mission from a near-earth asteroid. Note the high cost!
  • Cross-Scale: Study MHD plasma properties in the terrestrial magnetosphere and bow shock. 7 ESA spacecraft forming 2 nested tetrahedra with a shard corner. (International collaboration will produce the optimum fleet of 12 spacecraft in 3 nested tetrahedra.) High cost!

Friday, July 24, 2009

Interesting Astrophysics: Jul 14 to 24

This edition of Interesting Astrophysics is graced by not one, not two, but five papers on galactic winds. Matsubayashi et al present Fabry-Perot observations of the NGC 253's wind, while both Westmoquette et al and Veilleux et al present observations of M82's wind. Two papers consider theoretical models, specifically numerical simulations, of winds: Cooper et al simulate individual cloud(s) in a superwind at very high resolution, while Kapferer et al simulate clusters of galaxies including a semi-analytical prescription for mixed mode thermal/CR-driven winds.

Finally there is a very extensive discussion of Fermi's Paradox by Cirkovic, which is well worth a read by anyone interested in astrobiology, while Selvelli and Molaro discuss the nature of the telescopes in the paintings of Brueghel the Elder.


Galaxies and Starbursts

Galactic Wind in the Nearby Starburst Galaxy NGC 253 Observed with the Kyoto3DII Fabry-Perot Mode
K. Matsubayashi, H. Sugai, T. Hattori, A. Kawai, S. Ozaki, G. Kosugi, T. Ishigaki, A. Shimono, arXiv:0907.2012 [ps, pdf, other]
Comments: 22 pages, 5 figures, 1 table, accepted for publication in ApJ

The Optical Structure of the Starburst Galaxy M82. II. Nebular Properties of the Disk and Inner-Wind
M. S. Westmoquette, J. S. Gallagher, L. J. Smith, G. Trancho, N. Bastian, I. S. Konstantopoulos, arXiv:0907.3162 [ps, pdf, other]
Comments: 27 pages, 18 figures (13 in colour), accepted for publication in ApJ

WARM MOLECULAR HYDROGEN IN THE GALACTIC WIND OF M82
Sylvain Veilleux, David S. N. Rupke, and Rob Swaters, 2009, ApJ, 700, L149
PDF (1.23 MB) | HTML

Mass Loss From Planetary Nebulae in Elliptical Galaxies
Joel N. Bregman, Joel R. Parriott, arXiv:0907.3489 [ps, pdf, other]
Comments: 34 pages with 20 figures. Higher quality figures are in the ApJ version
Journal-ref: ApJ, 699, 2009, 923-932

Radio monitoring of NGC 7469: Late time radio evolution of SN 2000ft and the circumnuclear starburst in NGC 7469
M.A. Perez-Torres, A. Alberdi, L. Colina, J.M. Torrelles, N. Panagia, A. Wilson, E. Kankare, S. Mattila, arXiv:0907.2644 [ps, pdf, other]
Comments: 10 pages, 5 figures, accepted for publication in MNRAS

Integral field optical spectroscopy of a representative sample of ULIRGs: I. The Data
M. Garcia-Marin, L. Colina, S. Arribas, A. Monreal-Ibero, arXiv:0907.2408 [pdf, other]
Comments: To appear in A&A. Paper with higher quality images can be found at this http URL

Integral field optical spectroscopy of a representative sample of ULIRGs: II. Two-dimensional kpc-scale extinction structure
M. Garcia-Marin, L. Colina, S. Arribas, arXiv:0907.2218 [ps, pdf, other]
Comments: To appear in A&A

Starburst-Driven Galactic Winds: Filament Formation and Emission Processes
J. L. Cooper, G. V. Bicknell, R. S. Sutherland, J. Bland-Hawthorn
Comments: Accepted to ApJ, 39 pages, 21 figures, movie file can obtained at this http URL

From their abstract, with my comments in square brackets: "The degree of fragmentation is highly dependent on the resolution of the simulation, with the number of cloudlets formed increasing as the Kelvin-Helmholtz instability is better resolved [1]. Nevertheless, there is a clear qualitative trend, with the filamentary structure still persistent at high resolution. We confirm the mechanism behind the formation of the H-alpha emitting filaments found in our global simulations of a starburst-driven wind. Based on our resolution study, we conclude that bow shocks around accelerated gas clouds, and their interaction, are the main source of the soft X-ray emission observed in these galactic-scale winds [2]."

[1] This is actually a very worrying result, and indeed is one of the primary reasons I have not pushed forward to publish our our high resolution 2-D and 3-D simulations but have instead switched to analytical theory. The characteristic size of H-alpha cloudlets in reality cannot be arbitrarily small (and if it were, there would be adverse dynamical consequences), so increasing fragmentation in the numerical simulations suggests that the results are being driven by numerics and not physics. There are reason to worry about instabilities, structure formation and mixing processes within even apparently converged grid-based simulations (as demonstrated by e.g. the Santa Barbara Cluster Comparison Project; Frenk et al 1999).

[2] Good! - that's what I've been saying for years (for very similar reasons and with similar or greater levels of quantitative justification, dare I say it).

I really would have liked to see some quantitative justification for the claims regarding both the X-ray emission and whether the H-alpha cloud complexes/filaments are really luminous enough to reproduce real winds.

The classic problem with simulating winds is that is it trivial to produce things that qualitatively reproduce wind-like structures, and adding resolution always generates more structure which makes the simulation superficially look more like real (complex, multiphase, messy) superwinds. But those same simulations can be orders of magnitude off in terms of quantitatively matching real winds. Even when you can get the models to match one particular observational parameter well quantitatively (e.g. the cloud OVI/X-ray flux ratio; Marcolini et al 2005) you often find some other observable parameter has values that tell you your beautiful simulation can't be a truly realistic model of reality (e.g. you cloud lifetime is ~1 Myr when real cloud lifetimes must be ~10 Myr, or the OVI column density through the cloud is one hundredth of the observed total line of sight OVI column density, meaning that your model implies you'd need ~100 clouds along every line of sight through a superwind).

Overall, its nice work but the very limited time scales (~ 1 Myr), the numerical issues I mentioned above, and lack of quantification in terms of luminosities make its claims seem no more strongly justified than preceding work.


Metal enrichment of the intra-cluster medium by thermally and cosmic-ray driven galactic winds
W. Kapferer, T. Kronberger, D. Breitschwerdt, S. Schindler, E. van Kampen, S. Kimeswenger, W. Domainko, M. Mair, M. Ruffert, arXiv:0907.3800 [ps, pdf, other]
Comments: 9 pages, 6 figures, accepted by A&A

Assumes that the terminal velocity of the (effectively single phase) wind is equal to the galactic escape velocity. Its a common assumption, and may have some semi-empirical justification for the entrained cool gas (T<105 K) in starburst-driven winds, but this assumption lacks theoretical and observational justification for the hot gas (admittedly, and notably, all the observational data is on winds from starburst galaxies, which are almost certainly predominantly thermally-driven). And in thermal or even mixed-mode thermal+CR winds its the hot gas that is involved in driving the wind and holds the metals.

Numerical simulations of hot halo gas in galaxy mergers
Manodeep Sinha, Kelly Holley-Bockelmann, 2009, MNRAS, 397, 190
Full Text: HTML, PDF (Size: 46324K)

Less than 10 percent of star formation in z=0.6 massive galaxies is triggered by major interactions

Aday R. Robaina, et al, arXiv:0907.3728 [ps, pdf, other]
Comments: Submitted to ApJ. 41 pages, 11 figures


Black Holes and AGN

Optical--to--X-ray emission in low-absorption AGN: Results from the Swift-BAT 9 month catalogue
R. V. Vasudevan, R. F. Mushotzky, L. M. Winter, A. C. Fabian, arXiv:0907.2272 [ps, pdf, other]
Comments: 25 pages, 22 figures, 4 tables, accepted for publication in MNRAS

AGN with strong forbidden high-ionization lines selected from the Sloan Digital Sky Survey
Jonathan M. Gelbord, James R. Mullaney, Martin J. Ward, 2009, MNRAS, 397, 172
Full Text: HTML, PDF (Size: 2513K)

Black Holes in the Galaxy
Josep M. Paredes, arXiv:0907.3602 [ps, pdf, other]
Comments: Notes to a series of five Lectures given in the First La Plata International School on Astronomy and Geophysics: Compact Objects and their emission, La Plata Observatory, 10-14 March 2008, Argentina, 32 pages, 12 figures, 1 table, editors G.E. Romero and P. Benaglia; ISBN 978-987-24948-0-3


Other

On the telescopes in the paintings of J. Brueghel the Elder
Pierluigi Selvelli, Paolo Molaro, arXiv:0907.3745 [ps, pdf, other]
Comments: 5 pages, 3 figures. Proceedings of 400 years of Astronomical telescopes Conference at ESA/ESTEC in Noordwijk. Brandl, Bernhard R.; Stuik, Remko; Katgert-Merkeli, J.K. (Jet) (Eds.)

Fermi's Paradox - The Last Challenge for Copernicanism?
Milan M. Cirkovic, arXiv:0907.3432 [ps, pdf, other]
Comments: 39 pages, 3 figures, slightly expanded in comparison to the journal version
Journal-ref: Serbian Astronomical Journal, vol. 178, pp. 1-20 (2009)

Friday, March 20, 2009

Interesting Astrophysics: Mar 16 to Mar 20

An unusually large crop of interesting star/supernova/star cluster related preprints attracted my attention this week. From the largest (radius) star in the LMC through photon-tiring in radiation driven winds, super-hard X-ray emission from Eta Carinae, to an anomaly with the classic wind-blown bubble, the "Bubble Nebula."


Galaxies and Starbursts

The Relationship Between Intergalactic HI/OVI and Nearby (z<0.017) Galaxies
B.P. Wakker, B.D. Savage, arXiv:0903.2259 [ps, pdf, other]
Comments: ApJ Supplement, in press

On the massive star content of the nearby dwarf irregular Wolf-Rayet galaxy IC 4662
P.A. Crowther, J.L. Bibby, arXiv:0903.2288 [ps, pdf, other]
Comments: 10 pages, 4 figures, accepted for Astronomy & Astrophysics

The Vela Cloud: A Giant HI Anomaly in the NGC 3256 Group
Jayanne English, Baerbel Koribalski, Joss Bland-Hawthorn, Ken Freeman, Claudia McCain, arXiv:0903.2690 [ps, pdf, other]
Comments: 46 pages, 11 figures, submitted to AJ

The chemical evolution of galaxies within the IGIMF theory: the [alpha/Fe] ratios and downsizing
Simone Recchi, Francesco Calura, Pavel Kroupa, arXiv:0903.2395 [ps, pdf, other]
Comments: 13 pages, 18 figures, accepted for publication in Astronomy and Astrophysics

The Star Formation Law at Low Surface Density
Ted K. Wyder, et al, arXiv:0903.3015 [ps, pdf, other]
Comments: 53 pages, 21 Figures, accepted for publication in the ApJ

Black Holes and AGN

X-ray Properties of Intermediate-Mass Black Holes in Active Galaxies. II. X-ray-Bright Accretion and Possible Evidence for Slim Disks
Louis-Benoit Desroches, Jenny E. Greene, Luis C. Ho, arXiv:0903.2257 [ps, pdf, other]
Comments: 11 pages, 6 figures, submitted to ApJ, emulateapj

The Suzaku View of the Swift/BAT AGNs (II): Time Variability and Spectra of Five "Hidden" AGNs
Lisa Winter, Richard Mushotzky, Yuichi Terashima, Yoshihiro Ueda, arXiv:0903.2802 [ps, pdf, other]
Comments: 45 pages, 16 figures, 10 tables, accepted to ApJ

Journey to the $M_{\rm BH} - \sigma$ relation: the fate of low mass black holes in the Universe
Marta Volonteri, Priyamvada Natarajan, arXiv:0903.2262 [pdf, other]
Comments: 8 pages, 5 figures, submitted to MNRAS


Numerical Astrophysics and Hydrodynamics

Simulating Magnetohydrodynamical Flow with Constrained Transport and Adaptive Mesh Refinement; Algorithms & Tests of the AstroBEAR Code
Andrew J. Cunningham, Adam Frank, Peggy Varniere, Sorin Mitran, Thomas W. Jones, arXiv:0710.0424 (replaced) [ps, pdf, other]
Comments: Additional Tests shown. Accepted to ApJS

Includes some images showing the interaction between a cylindrical cloud moving though an ambient medium with a magnetic field oriented in various directions w.r.t the cloud motion. B fields at 45 or 90 degree to the cloud motion/axis lead to less cloud disruption than if the B field is parallel to the cloud axis/motion.


Stars, Supernovae and Planets

The Physical Properties of the Red Supergiant WOH G64: The Largest Star Known?
Emily M. Levesque, Philip Massey, Bertrand Plez, Knut A. G. Olsen, arXiv:0903.2260 [ps, pdf, other]
Comments: 25 pages, 5 figures; accepted for publication in The Astronomical Journal

Super-hard X-Ray Emission from eta Carinae Observed with Suzaku
Akiko Sekiguchi, Masahiro Tsujimoto, Shunji Kitamoto, Manabu Ishida, Kenji Hamaguchi, Hideyuki Mori, Yohko Tsuboi, arXiv:0903.3307 [ps, pdf, other]
Comments: Accepted for publication in PASJ (10 pages, 7 Postscript figures)

Interestingly they argue that the 15-50 keV emission is either Inverse Compton emission arising between stellar UV photons and non-thermal electrons "or to the thermal bremsstrahlung of very hot plasma, and not to the bremsstrahlung by non-thermal electrons colliding with cold ambient matter."

On the behaviour of stellar winds that exceed the photon-tiring limit
Allard Jan van Marle, Stanley P. Owocki, Nir J. Shaviv, MNRAS, 2009, 394, 595
Full Text: HTML, PDF (Size: 9132K)

A steady-state continuum radiation-driven wind not have a mechanical luminosity exceeding the radiative luminosity at its base (the photon tiring limit). This paper explores non-steady state winds beyond the photon tiring limit. Interesting also w.r.t radiation-driven winds from AGN perhaps?

Unsolved Problems about Supernovae
Nino Panagia, arXiv:0903.3378 [ps, pdf, other]
Comments: 7 pages, Proceedings of 'Probing Stellar Populations out to the Distant Universe', Cefalu, Italy, Sep 7-19, 2008, AIP Conf. Proc. Series

Three-dimensional numerical model of the Omega Nebula (M17): simulated thermal X-ray emission
J. Reyes-Iturbide, P. F. Velázquez, M. Rosado, A. Rodríguez-González, R. F. González, A. Esquivel, 2009, MNRAS, 394, 1009
Full Text: HTML, PDF (Size: 4758K)

Study of Bubble Nebula using IUE high resolution Spectra
M. Y. Anand, B. A. I Kagali, Jayant Murthy, arXiv:0903.2828 [ps, pdf, other]
Comments: 9 pages, 6 figures, accepted in BASI

Interesting. Yet another expansion velocity - bubble size - stellar age anomaly, and this time in a spherical bubble around a main sequence star that really should follow the Weaver bubble model. The dynamical age of a wind blown bubble tbub = 0.6*Rbub/vbub, in this case ~3e4 years, which is much smaller than the age of the main sequence O star thought to have blown the bubble (~2e6 years). Yet the expansion velocity of vbub ~ 36 km/s is high enough that there is no reason to suspect the bubble has stalled, and its near perfect shape does not suggest irregular expansion.

Wednesday, March 04, 2009

Astro2010 White Papers I think are interesting

The deadline for the submission of science White Paper to the U.S. National Academy of Science's Astro2010 Decadal Survey was Sunday 15th February 2009. Now its down to the poor saps on the actual survey panels to read (or skim) through vast numbers of seven page documents.

Although their aim is to convince the Decadal Survey panel members of the importance of their relative scientific areas to the future of astronomy and astrophysics in the U.S., these White Papers are interesting as mini-reviews of how their authors view their respective fields and how they'd like to see them develop.

Here are the White Papers that (a) were also posted on arXiv by their authors by March 3rd 2009, and that (b) I consider somewhat interesting, or (c) I had some involvement with and are therefore by definition interesting. This is a very small selection of the approximately 320 or so science White Papers submitted to the Decadal Survey.

I've trimmed the author lists down to "First Author, et al" (even in cases where there are only two authors) to avoid the artificial popularity contest created by the variable number of endorsers on each White Paper.

I've ordered them crudely in terms of our Galaxy, galaxies in general, high redshift, AGN, clusters, planets, stars and assorted other phenomena.

Structure and Dynamics of the Milky Way: an Astro2010 Science White Paper
Authors: M. J. Reid, K. M. Menten, A. Brunthaler, G. A. Moellenbrock, arXiv:0902.3928 [ps, pdf, other]
Comments: 8 pages, 2 figures

Young stellar clusters and star formation throughout the Galaxy
Authors: Eric Feigelson, arXiv:0903.0374 [pdf]

Comments: Science Working Paper for the Astro2010 Decadal Survey. For a version with color figures, see this http URL

The History of Star Formation in Galaxies
Authors: Thomas M. Brown, et al, arXiv:0902.2973 [pdf]
Comments: Science white paper submitted to the Astro2010 Decadal Survey. 7 pages, 4 figures, PDF

How do Galaxies Accrete Gas and Form Stars?
Authors: M.E. Putman, et al, arXiv:0902.4717 [ps, pdf, other]
Comments: 8 pages, Science white paper for the Astro2010 Decadal Survey, 2 color figures

The Star Formation Histories of Disk and E/S0 Galaxies from Resolved Stars
Authors: Knut A.G. Olsen, et al, arXiv:0902.4216 [pdf]
Comments: Science white paper submitted to Astro2010 Decadal Survey GAN Panel 7 pages + cover page, 2 figures

Kinematics and Formation Mechanisms of High-Redshift Galaxies
Authors: David R. Law, et al, arXiv:0902.2567 [pdf]
Comments: 8 pages total. White paper submitted to the Astro 2010 Decadal Survey

Nearby Galaxies: Templates for Galaxies Across Cosmic Time
Authors: F. J. Lockman, et al, arXiv:0902.3963 [pdf, other]
Comments: science white paper submitted to the US Astro2010 Decadal Survey

The Galactic Center: A Laboratory for Fundamental Astrophysics and Galactic Nuclei
Authors: A. Ghez, et al, arXiv:0903.0383 [ps, pdf, other]
Comments: An ASTRO2010 White Paper. Animations and high resolution images can be found at this http URL

The Very Local Universe in X-rays
Authors: A. Ptak, et al, arXiv:0902.4239 [pdf]
Comments: 8 pages, Astro2010 Science White paper. Full-resolution version available at this http URL

Starburst Galaxies: Outflows of Metals and Energy into the IGM
Authors: David K. Strickland, et al, arXiv:0902.2945 [pdf, other]
Comments: White Paper for US Astro2010 Decadal Survey. 7 pages. Technical supplement at this http URL

Astrophysics from the Highly-Redshifted 21 cm Line
Authors: Steven Furlanetto, et al, arXiv:0902.3011 [ps, pdf, other]
Comments: 8 pages, 5 figures, science white paper submitted to the US Astro2010 Decadal Survey "Galaxies across Cosmic Time" Science Frontier Panel

Radio Supernovae: Circum-Stellar Investigation (C.S.I.) of Supernova Progenitor Stars
Authors: Christopher J. Stockdale, et al, arXiv:0902.4059 [ps, pdf, other]
Comments: 8 pages, 4 figures. White Paper submitted to the Astro2010 SSE panel

Despite the slightly cheesy title (CSI? That is so five years ago.) this is actually a really interesting White Paper IMHO.

Plasma Physics Processes of the Interstellar Medium
Authors: Steven Spangler, et al, arXiv:0902.4181 [ps, pdf, other]
Comments: White paper submitted for consideration of the Astro2010 Decadal Survey Committee, in the area of "Galactic Neighborhood" (GAN)

In Situ Probes of the First Galaxies and Reionization: Gamma-ray Bursts
Authors: Matthew McQuinn, et al, arXiv:0902.3442 [ps, pdf, other]
Comments: 8 pages, 3 figures, science white paper submitted to the US Astro2010 Decadal Survey

Imaging the cool gas, dust, star formation, and AGN in the first galaxies
Authors: C.L. Carilli, et al, arXiv:0902.3671 [pdf, other]
Comments: 8 pages total. White paper submitted to the Astro 2010 Decadal Survey

High Redshift Radio Galaxies: Laboratories for Massive Galaxy and Cluster Formation in the early Universe
Authors: G. Miley, et al, arXiv:0902.3677 [ps, pdf, other]
Comments: 8 pages total. White paper submitted to the Astro 2010 Decadal Survey

The Growth of Supermassive Black Holes Across Cosmic Time
Authors: K. Nandra, et al, arXiv:0903.0547 [pdf]
Comments: 8 pages, Science White paper submitted to Astro2010 Decadal survey. Supplementary information available at this http URL

Diffuse baryonic matter beyond 2020
Authors: M. Markevitch, et al, arXiv:0902.3709 [pdf, other]
Comments: pdflatex, 9 pages, 3 color figures. White paper submitted for NRC Astro2010 Decadal Survey

Nice enough paper, but they totally cheated on the paper length. You're allowed 7 pages plus 1 cover page, including all figures and references. The Decadal Survey should not consider this paper. The rest of us managed to follow the rules. Every panel or time allocation committee I've been on seems to get at least one wise guy who thinks they can get away with an extra page, often in the hope that only the last page will be removed (often only with the reference list on it).

How and When do Planets Form? The Inner Regions of Planet Forming Disks at High Spatial and Spectral Resolution
Authors: R. Millan-Gabet, John D. Monnier, arXiv:0902.2576 [pdf]
Comments: Science White Paper submitted to the Astro2010 Decadal Survey

New Worlds: Evaluating terrestrial planets as astrophysical objects
Authors: Caleb A. Scharf, et al, arXiv:0902.2755 [pdf]
Comments: Submitted as a White Paper to the 2010 Astronomy & Astrophysics Decadal Survey

The Formation and Evolution of Planetary Systems: The Search for and Characterization of Young Planets
Authors: Charles Beichman, et al, arXiv:0902.2972 [pdf]
Comments: White Paper Submission to Astro2010

X-ray Studies of Planetary Systems: An Astro2010 Decadal Survey White Paper
Authors: Eric Feigelson, et al, arXiv:0903.0598 [pdf, other]

No Planet Left Behind: Investigating Planetary Diversity and Architecture with SIM Lite
Authors: S. R. Kulkarni, et al, arXiv:0902.3475 [ps, pdf, other]
Comments: 7 pages, 3 figures, submitted to The Astronomy and Astrophysics Decadal Survey

MARVELS: Revealing the Formation and Dynamical Evolution of Giant Planet Systems
Authors: Jian Ge, et al, arXiv:0903.0181 [ps, pdf, other]
Comments: Unpublished SDSS-III white paper for the US Decadal Survey. See this http URL for details of the international SDSS-III project

Toward the End of Stars: Discovering the Galaxy's Coldest Brown Dwarfs
Authors: Adam J. Burgasser, et al, arXiv:0902.2604 [pdf]
Comments: 8 pages, 3 figures, Astro2010 Science White Paper

Temporal Variability of Stars and Stellar Systems
Authors: T. A. Lister, et al, arXiv:0902.2966 [ps, pdf, other]
Comments: Submitted as a White Paper to the SSE Panel of the Astro2010 Decadal Survey

Quantifying Stellar Mass Loss with High Angular Resolution Imaging
Authors: Stephen Ridgway, et al, arXiv:0902.3008 [pdf]
Comments: Science white paper prepared for Astro2010

X-ray Timing of Neutron Stars, Astrophysical Probes of Extreme Physics
Authors: Z. Arzoumanian, et al, arXiv:0902.3264 [pdf]
Comments: 8 pages. Science white paper submitted to Astro2010: The Astronomy and Astrophysics Decadal Survey

X-ray Timing of Stellar Mass Black Holes
Authors: John A. Tomsick, et al, arXiv:0902.4238 [ps, pdf, other]
Comments: White paper submitted to the Astro 2010 Decadal Survey

Stellar-Mass Black Holes and Their Progenitors
Authors: J. M. Miller, et al, arXiv:0902.4677 [pdf]
Comments: Astro 2010 Science White Paper

Spin and Relativistic Phenomena Around Black Holes
Authors: L. Brenneman, et al, arXiv:0902.4691 [pdf]
Comments: Astro 2010 Science White Paper

Gravitational Wave Astronomy Using Pulsars: Massive Black Hole Mergers & the Early Universe
Authors: P. Demorest. et al, arXiv:0902.2968 [pdf, other]
Comments: 8 pages, white paper submitted to the Astro2010 Decadal Survey. For NANOGrav information, see this http URL

The Dynamic X-ray Sky of the Local Universe
Authors: Alicia M. Soderberg, et al, arXiv:0902.3674 [pdf]
Comments: 8 pages, 2 figures; White Paper submitted to the Astro2010 SSE panel

Origin and evolution of cosmic accelerators - the unique discovery potential of an UHE neutrino telescope
Authors: Pisin Chen, et al, arXiv:0902.3288 [pdf, other]
Comments: 7 pages, 3 figures, submitted to US Astronomy Decadal Survey (2010-2020)

Properties of Dark Matter Revealed by Astrometric Measurements of the Milky Way and Local Galaxies
Authors: Edward Shaya, et al, arXiv:0902.2835 [pdf]
Comments: 8 pages, 3 figures, White Paper for the Decadal Survey in Astrophysics

The Need for Plasma Astrophysics in Understanding Life Cycles of Active Galaxies
Authors: H. Li, et al, arXiv:0902.3469 [pdf]
Comments: a White Paper submitted to GCT and FCP panels of Astro2010

A New Era in Extragalactic Background Light Measurements: The Cosmic History of Accretion, Nucleosynthesis and Reionization
Authors: Asantha Cooray et al, arXiv:0902.2372 [ps, pdf, other]
Comments: 7 pages; Science White Paper for the US Astro 2010-2020 Decadal Survey. If interested in further community-wide efforts on this topic please contact the first author

Astrophysics with Radioactive Atomic Nuclei
Authors: R. Diehl et al, arXiv:0902.2494 [pdf]
Comments: 7 pages, white paper for US Nat.Acad.Sci. Decadal Survey "Astro2010"

Solid State Astrophysics: Probing Interstellar Dust and Gas Properties with X-rays
Authors: Julia C. Lee, et al, arXiv:0902.4671 [ps, pdf, other]
Comments: 8 pages, 6 figures. White paper submitted to the Astro2010 Decadal survey for Astronomy and Astrophysics

Understanding of the role of magnetic fields: Galactic perspective
Authors: A. Lazarian, S. Boldyrev, C. Forest, J. Sarff, P. Terry, arXiv:0902.3618 [pdf]
Comments: 8 pages, white paper submitted to the Galactic Neighborhood (GAN) Panel

[Updated 03/09/09. Added the following White Paper.]

A complete view of galaxy evolution: panchromatic luminosity functions and the generation of metals
Andrew W. Blain, et al, arXiv:0903.1272 [pdf]
Comments: A whitepaper submitted on 15th February 2009 in response to the call from the Astro2010 panel: astro2010.org; uploaded as an 8-page pdf file

[Updated 03/11/09. Added the following White Paper.]

A Proposal for a Renewed Research Emphasis in Astrophysical and Celestial Dynamics
D. J. Scheeres, et al, arXiv:0903.1650 [pdf, other]
Comments: 6 pp. White Paper submitted for the 2010 Decadal Survey, to panels PSF, SSE, GAN, & GCT

Friday, February 27, 2009

Interesting Astrophysics: Feb 23 to Feb 27

The latest batch of interesting papers and preprints for February 2009. Doesn't time fly? As usual any comments I have on any of the papers are given in italics.


Galaxies and Starbursts

Ubiquitous Outflows in DEEP2 Spectra of Star-Forming Galaxies at z = 1.4
Weiner, Benjamin J.; Coil, Alison L.; Prochaska, Jason X.; Newman, Jeffrey A.; Cooper, Michael C.; Bundy, Kevin; Conselice, Christopher J.; Dutton, Aaron A.; Faber, S. M.; Koo, David C.; Lotz, Jennifer M.; Rieke, G. H.; Rubin, K. H. R., 2009, ApJ, 692, 197
PDF (2.04 MB) | HTML

A Young Super Star Cluster in the Nuclear Region of NGC 253
Katherine A. Kornei, Nate McCrady, arXiv:0902.4027 [ps, pdf, other]
Comments: 8 pages, 5 figures, accepted for publication in ApJ

Are ring galaxies the ancestors of giant low surface brightness galaxies?
M. Mapelli, B. Moore, arXiv:0902.3554 [ps, pdf, other]
Comments: 4 pages, 6 figures, Astronomische Nachrichten, Vol.329, p.948, proceeding of "Galactic & Stellar Dynamics in the era of high resolution surveys", Strasbourg, France, March 16-20 2008

The diverse X-ray properties of four truly isolated elliptical galaxies: NGC 2954, NGC 6172, NGC 7052, and NGC 7785
Elisabetta Memola, Ginevra Trinchieri, Anna Wolter, Paola Focardi, Birgit Kelm, arXiv:0902.3611 [ps, pdf, other]
Comments: Comments: 12 pages, 14 PostScript figures, 3 tables, LaTeX - Accepted for publication in Astronomy & Astrophysics, elisabetta.memola@mib.infn.it. The original version of the manuscript is available at: this http URL

The onset of warps in Spitzer observations of edge-on spiral galaxies
Kanak Saha, Roelof de Jong, Benne Holwerda, arXiv:0902.4436 [ps, pdf, other]
Comments: Accepted for publication in MNRAS, 25 pages, 12 figures

Spitzer/IRAC 4.5 micron observations and luminosities of ESO121-G6, NGC 4013, NGC 4157, NGC 4302, NGC 4565, NGC 5907 (i.e. many of the Howk and Savage edge-on sample).

The Extragalactic Distance Database
R Brent Tully, L Rizzi, E J Shaya, H M Courtois, D I Makarov, B A Jacobs, arXiv:0902.3668 [pdf, other]
Comments: 10 pages, 9 figures, submitted to Astronomical Journal

The Extragalactic Distance Database: All Digital HI Profile Catalog
Helene M Courtois, R B Tully, J R Fisher, N Bonhomme, M Zavodny, A Barnes, arXiv:0902.3670 [pdf, other]
Comments: 17 pages, 22 figures, submitted to Astronomical Journal

A spectroscopic measure of the star-formation rate density in dwarf galaxies at z~1
G.T. Davies, David Gilbank, Karl Glazebrook, Richard Bower, I.K. Baldry, Michael Balogh, G.K.T. Hau, I.H. Li, P. McCarthy, S. Savaglio, arXiv:0902.3997 [ps, pdf, other]
Comments: Accepted for publication in MNRAS Letters. 6 pages, 2 figures

Trigonometric Parallaxes of Massive Star Forming Regions: VI. Galactic Structure, Fundamental Parameters and Non-Circular Motions
M. J. Reid, K. M. Menten, X. W. Zheng, A. Brunthaler, L. Moscadelli, Y. Xu, B. Zhang, M. Sato, M. Honma, T. Hirota, K. Hachisuka, Y. K. Choi, G. A. Moellenbrock, A. Bartkiewicz, arXiv:0902.3913 [ps, pdf, other]
Comments: 35 pages, 7 figures, 7 tables

This is the actual paper associated with one of the January 2009 AAS meeting press releases I discussed in this older blog entry . Better late than never, eh? A really nice piece of work though.

On the origin of high-velocity clouds
J. Binney, C. Nipoti, F. Fraternali, arXiv:0902.4525 [ps, pdf, other]
Comments: Submitted to MNRAS. 13 pages, 9 figures

Poors cold water on the currently popular idea (Maller & Bullock, etc) that the HVCs are gas cooling out of the the hot Galactic halo via thermal instability. Apparently a hot atmosphere confined by a gravitational field and radially stratified by specific entropy is NOT thermally unstable in the common sense. Adiabatic (constant entropy) coronae are subject to thermal instability, but in addition to being somewhat unrealistic they can be stabilized against T.I. by even tiny amounts of thermal conduction (Spitzer/100). Impressive.


Black Holes and AGN

The effect of stellar feedback on the formation and evolution of gas and dust tori in AGN
M. Schartmann, K. Meisenheimer, H. Klahr, M. Camenzind, S. Wolf, Th. Henning, 2009, MNRAS, 393, 759
Full Text: HTML, PDF (Size: 9636K)

Evolution of X-ray cavities
Marcus Brüggen, Evan Scannapieco, Sebastian Heinz, arXiv:0902.4242 [ps, pdf, other]
Comments: 13 pages, 8 figures, MNRAS, in press

Nice work. Must check out the XIM software mentioned in the paper to see if it is more capable than my home-grown simulated X-ray imaging and spectra software that is sadly gathering dust.

The ULX NGC 1313 X-2 : an optical study revealing an interesting behavior
Fabien Grisé, Manfred W. Pakull, Roberto Soria, Christian Motch, arXiv:0902.4431 [ps, pdf, other]
Comments: 3 pages, 2 figures, to appear in the proceedings of the second Simbol-X International Symposium "Simbol-X - Focusing on the Hard X-ray Universe", AIP Conf. Proc. Series, P. Ferrando and J. Rodriguez eds

Looks like they're moving away from the intermediate mass black hole interpretation for ULXs as well. Sigh. It was nice idea... So where are the true intermediate mass black holes, if they're not ULXs?


CAIXA: a Catalogue of AGN In the XMM-Newton Archive - Correlations
Stefano Bianchi, Nuria Fonseca Bonilla, Matteo Guainazzi, Giorgio Matt, Gabriele Ponti, arXiv:0902.4539 [ps, pdf, other]
Comments: 3 pages, 3 figures, to appear in the proceedings of the second Simbol-X International Symposium "Simbol-X - Focusing on the Hard X-ray Universe", AIP Conf. Proc. Series, P. Ferrando and J. Rodriguez eds


Stars, Supernovae and Planets

Predictions of the extent of self-enrichment in oxygen of giant metal-poor HII regions
Aida Wofford, arXiv:0902.3679 [ps, pdf, other]
Comments: 13 pages, 6 eps figures, MN Latex v2.2, accepted for publication in MNRAS

A Smoking Gun in the Carina Nebula
Kenji Hamaguchi, Michael F. Corcoran, Yuichiro Ezoe, Leisa Townsley, Patrick Broos, Robert Gruendl, Kaushar Vaidya, Stephen M. White, Tod Strohmayer, Rob Petre, You-Hua Chu, arXiv:0902.4162 [ps, pdf, other]
Comments: 9 pages, 3 figures, accepted for publication to ApJL

The broad H-alpha, [O III] line wings in stellar supercluster A of NGC2363 and the turbulent mixing layer hypothesis
Luc Binette, Laurent Drissen, Leonardo Ubeda, Alejandro C. Raga, Carmelle Robert, Yair Krongold, arXiv:0902.3689 [ps, pdf, other]
Comments: 12 pages, 9 figures

Suzaku Spectroscopy of Vela Shrapnel B
Hiroya Yamaguchi, Satoru Katsuda, arXiv:0902.3672 [ps, pdf, other]
Comments: accepted for publication in ApJ, 7 pages, 5 figures