Two aspects of filamentary molecular cloud evolution are addressed: (1) Exploring analytically the role of the environment for the evolution of filaments demonstrates that considering them in isolation (i.e. just addressing the fragmentation stability) will result in unphysical conclusions about the filament's properties. Accretion can also explain the observed decorrelation between FWHM and peak column density. (2) Free-fall accretion onto finite filaments can lead to the characteristic "fans" of infrared-dark clouds around star-forming regions. The fans may form due to tidal forces mostly arising at the ends of the filaments, consistent with numerical models and earlier analytical studies
Artículo de publicación ISIRecent surveys of dust continuum emission at sub-mm wavelengths have show...
How molecular clouds fragment and create the dense structures which go on to eventually form stars ...
Context. Filamentary structures in the interstellar medium are crucial ingredients of the star forma...
Two aspects of filamentary molecular cloud evolution are addressed: (1) Exploring analytically the r...
In an extension of Fischera & Martin (2012a) and Heitsch (2013), two aspects of the evolution of ext...
Recent models of molecular cloud formation and evolution suggest that such clouds are dynamic and ge...
We analytically investigate the modes of gravity-induced star formation possible in idealized finite...
Context. The fragmentation of filaments in molecular clouds has attracted a lot of attention recentl...
<p>The star formation process involves a wide range of spatial scales, densities and temperatures. H...
Filamentary structures identified in far-infrared observations of molecular clouds are typically fou...
We present hydrodynamic simulations of self-gravitating dense gas in a galactic disk, exploring scal...
Context. We started a multi-scale analysis of star formation in G202.3+2.5, an intertwined filamenta...
The interstellar medium is threaded by a hierarchy of filaments from large scales (∼100 pc) to small...
Context. Filamentary structures are common in molecular clouds. Explaining how they fragment to dens...
The exact process(es) that generate(s) dense filaments which then form prestellar cores within them ...
Artículo de publicación ISIRecent surveys of dust continuum emission at sub-mm wavelengths have show...
How molecular clouds fragment and create the dense structures which go on to eventually form stars ...
Context. Filamentary structures in the interstellar medium are crucial ingredients of the star forma...
Two aspects of filamentary molecular cloud evolution are addressed: (1) Exploring analytically the r...
In an extension of Fischera & Martin (2012a) and Heitsch (2013), two aspects of the evolution of ext...
Recent models of molecular cloud formation and evolution suggest that such clouds are dynamic and ge...
We analytically investigate the modes of gravity-induced star formation possible in idealized finite...
Context. The fragmentation of filaments in molecular clouds has attracted a lot of attention recentl...
<p>The star formation process involves a wide range of spatial scales, densities and temperatures. H...
Filamentary structures identified in far-infrared observations of molecular clouds are typically fou...
We present hydrodynamic simulations of self-gravitating dense gas in a galactic disk, exploring scal...
Context. We started a multi-scale analysis of star formation in G202.3+2.5, an intertwined filamenta...
The interstellar medium is threaded by a hierarchy of filaments from large scales (∼100 pc) to small...
Context. Filamentary structures are common in molecular clouds. Explaining how they fragment to dens...
The exact process(es) that generate(s) dense filaments which then form prestellar cores within them ...
Artículo de publicación ISIRecent surveys of dust continuum emission at sub-mm wavelengths have show...
How molecular clouds fragment and create the dense structures which go on to eventually form stars ...
Context. Filamentary structures in the interstellar medium are crucial ingredients of the star forma...