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We present simulations of initially stable isothermal clouds exposed to ionizing radiation from a discrete external source, and identify the conditions that lead to radiatively driven implosion and star formation. We use the Smoothed…

Solar and Stellar Astrophysics · Physics 2015-05-19 T. G. Bisbas , A. P. Whitworth , R. Wünsch , D. A. Hubber , S. Walch

Dynamical studies of superbubbles and Wolf-Rayet ring nebulae show discrepancies from the standard, adiabatic model for wind-blown bubbles. We therefore study the physical properties and kinematics of three candidate bubbles blown by single…

Astrophysics · Physics 2009-11-07 Yael Naze , You-Hua Chu , Martin A. Guerrero , M. S. Oey , Robert A. Gruendl , R. Chris Smith

We present an analysis of the diffuse ionised gas (DIG) in a high-resolution simulation of an isolated Milky Way-like galaxy, incorporating on-the-fly radiative transfer and non-equilibrium thermochemistry. We utilise the Monte-Carlo…

To understand the conditions under which dense, molecular gas is able to form within a galaxy, we post-process a series of three-dimensional galactic-disk-scale simulations with ray-tracing based radiative transfer and chemical network…

Star clusters are born in a highly compact configuration, typically with radii of less than about 1 pc roughly independently of mass. Since the star-formation efficiency is less than 50 per cent by observation and because the residual gas…

Astrophysics · Physics 2008-11-26 C. Weidner , P. Kroupa , D. E. A. Nuernberger , M. F. Sterzik

We present a new method of tracking and characterizing the environment in which galaxies and their associated circumgalactic medium evolve. We use a structure finding algorithm we developed to self-consistently parse and follow the…

Astrophysics of Galaxies · Physics 2016-03-02 Ali Snedden , Jared Coughlin , Lara Arielle Phillips , Grant Mathews , In-Saeng Suh

We model gas cooling in high-resolution N-body simulations in order to investigate the formation of the first generation of stars. We follow a region of a LCDM universe especially selected to contain a rich cluster by the present day. The…

If star formation proceeds by thermal fragmentation and the subsequent gravitational collapse of the individual fragments, how is it possible to form fragments massive enough for O and B stars in a typical star-forming molecular cloud where…

Solar and Stellar Astrophysics · Physics 2019-08-19 Steven N. Longmore , Thushara Pillai , Eric Keto , Qizhou Zhang , Keping Qiu

CO gas emission is a fundamental tool for measuring column density, but in cold, dark clouds, much of the CO is locked away in ice. We present JWST results from observations of a star forming filament (G0.342+0.024) that that appears to be…

The initial conditions of massive star and star cluster formation are expected to be cold, dense and high column density regions of the interstellar medium, which can reveal themselves via near, mid and even far-infrared absorption as…

We present an analysis of wind-blown, parsec-sized, mid-infrared bubbles and associated star-formation using GLIMPSE/IRAC, MIPSGAL/MIPS and MAGPIS/VLA surveys. Three bubbles from the Churchwell et al. (2006) catalog were selected. The…

We present synthetic continuum and $^{13}$CO and C$^{18}$O line emission observations of dense and cold filaments. The filaments are dynamically evolved using 3D-MHD simulations that include one of the largest on-the-fly chemical networks…

Astrophysics of Galaxies · Physics 2017-03-29 D. Seifried , Á. Sánchez-Monge , S. Suri , S. Walch

Filaments are key for star formation models. As part of the study carried out by the Herschel GCC Programme, here we study the filament properties presented in GCC.VII in context with theoretical models of filament formation and evolution.…

We explore, through a simplified, semi-analytic model, the formation of dense clusters containing massive stars. The parent cloud spawning the cluster is represented as an isothermal sphere. This sphere is in near force balance between…

Astrophysics · Physics 2009-11-13 Eric Huff , Steven Stahler

Filamentary structures are closely associated with star-forming cores, but their detailed physical connections are still not clear. We studied the dense gas in the region of OMC-3 MMS-7 in Orion A molecular cloud using the molecular lines…

Astrophysics of Galaxies · Physics 2021-07-07 Zhiyuan Ren , Lei Zhu , Hui Shi , Nannan Yue , Di Li , Qizhou Zhang , Diego Mardones , Jingwen Wu , Sihan Jiao , Shu Liu , Gan Luo , Jinjin Xie , Chao Zhang , Xuefang Xu

Massive stellar clusters provide radiation ($\mathrm{\sim 10^7-10^8~L_{\odot}}$) and winds ($\mathrm{\sim 1000~km/s}$) that act to heat dust and shape their surrounding environment. In this paper, the Arched Filaments in the Galactic center…

Astrophysics of Galaxies · Physics 2017-03-15 Matthew J. Hankins , Ryan M. Lau , Mark R. Morris , Terry L. Herter

Stars form in dense, dusty structures, which are embedded in larger clumps of molecular clouds often showing a clear filamentary structure on large scales (> 1pc). One of the best-studied regions in the Hi-GAL survey can be observed toward…

Astrophysics of Galaxies · Physics 2016-08-19 L. Olmi , M. Cunningham , D. Elia , P. Jones

We report measurements of the [CII] fine structure line at 157.714 micron in 30 normal star-forming galaxies with the Long Wavelength Spectrometer (LWS) on the Infrared Space Observatory (ISO). The ratio of the line to total far-infrared…

We present the EUV fluxes derived from the recent "combined stellar structure and atmosphere models" (CoStar models). The atmosphere models in particular account for the stellar wind and include non-LTE effects and line blanketing. We…

Astrophysics · Physics 2007-05-23 D. Schaerer

Centaurus A is the most nearby powerful AGN, widely studied at all wavelengths. Molecular gas has been found in the halo at a distance of ~20 kpc from the galaxy centre, associated with HI shells. The molecular gas lies inside some IR and…

Astrophysics of Galaxies · Physics 2016-01-27 Quentin Salomé , Philippe Salomé , Françoise Combes , Stephen Hamer , Ian Heywood