The impact of turbulence and magnetic field orientation on star-forming filaments
@article{Seifried2015TheIO, title={The impact of turbulence and magnetic field orientation on star-forming filaments}, author={Daniel Seifried and Stefanie Walch}, journal={Monthly Notices of the Royal Astronomical Society}, year={2015}, volume={452}, pages={2410-2422} }
We present simulations of collapsing filaments studying the impact of turbulence and magnetic field morphologies on their evolution and star formation properties. We vary the mass per unit length of the filaments as well as the orientation of the magnetic field with respect to the major axis. We find that the filaments, which have no or a perpendicular magnetic field, typically reveal a smaller width than the universal width of 0.1 pc proposed by e.g. Arzoumanian et al. 2011. We show that this…
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References
SHOWING 1-10 OF 65 REFERENCES
THE ROLE OF TURBULENCE AND MAGNETIC FIELDS IN SIMULATED FILAMENTARY STRUCTURE
- Physics
- 2015
We use numerical simulations of turbulent cluster-forming regions to study the nature of dense filamentary structures in star formation. Using four hydrodynamic and magnetohydrodynamic simulations…
The link between magnetic fields and filamentary clouds: bimodal cloud orientations in the Gould Belt
- Physics, Environmental Science
- 2013
The orientations of filamentary molecular clouds in the Gould Belt and their local intercloud media (ICM) magnetic fields are studied using near-infrared dust extinction maps and optical stellar…
A DYNAMICALLY COLLAPSING CORE AND A PRECURSOR OF A CORE IN A FILAMENT SUPPORTED BY TURBULENT AND MAGNETIC PRESSURES
- Physics
- 2014
To study physical properties of the natal filament gas around the cloud core harboring an exceptionally young low-mass protostar GF 9-2, we carried out J = 1–0 line observations of 12CO, 13CO, and…
THE FORMATION OF FILAMENTARY BUNDLES IN TURBULENT MOLECULAR CLOUDS
- Physics
- 2014
The classical picture of a star-forming filament is a near-equilibrium structure with its collapse dependent on its gravitational criticality. Recent observations have complicated this picture,…
MAGNETOHYDROSTATIC EQUILIBRIUM STRUCTURE AND MASS OF FILAMENTARY ISOTHERMAL CLOUD THREADED BY LATERAL MAGNETIC FIELD
- Physics
- 2013
Herschel observations have recently revealed that interstellar molecular clouds consist of many filaments. Polarization observations in optical and infrared wavelengths indicate that the magnetic…
Magnetically Regulated Star Formation in Three Dimensions: The Case of the Taurus Molecular Cloud Complex
- Physics
- 2008
We carry out three-dimensional MHD simulations of star formation in turbulent, magnetized clouds, including ambipolar diffusion and feedback from protostellar outflows. The calculations focus on…
The global velocity field of the filament in NGC 6334
- Physics
- 2013
Aims. Star formation involves the collapse of gas from the scale of giant molecular clouds down to dense cores. Our aim is to trace the velocities in the filamentary, massive star-forming region NGC…
Control of star formation by supersonic turbulence
- Physics
- 2000
Understanding the formation of stars in galaxies is central to much of modern astrophysics. However, a quantitative prediction of the star formation rate and the initial distribution of stellar…
Helical fields and filamentary molecular clouds — I
- Physics
- 1999
We study the equilibrium of pressure truncated, filamentary molecular clouds that are threaded by rather general helical magnetic fields. We first apply the virial theorem to filamentary molecular…
FILAMENTS IN SIMULATIONS OF MOLECULAR CLOUD FORMATION
- Physics
- 2013
We report on the filaments that develop self-consistently in a new numerical simulation of cloud formation by colliding flows. As in previous studies, the forming cloud begins to undergo…