Embedded, Self-Gravitating Equilibria in Sheetlike and Filamentary Molecular Clouds
arXiv:astro-ph/0005292 · doi:10.1086/309465
Abstract
Numerical solutions of the isothermal Lane-Emden equation are presented, corresponding to self-gravitating gaseous cores embedded within a finite density envelope of overall cylindrical symmetry. These structures may be members of a fragmentation hierarchy proceeding from sheets, to filaments, to elongated, prolate clumps. The embedded solutions are the first of their kind, and as such represent a significant improvement upon the isolated cloud paradigm used almost exclusively by previous authors. The properties of the equilibria are in reasonable agreement with observations of dense molecular cores in star-forming clouds, despite the fact that there is only one free parameter in the models. We show that this parameter may be identified with the critical wavelength for instability in the parent filament. The implications of further fragmentation and the possible influence of magnetic fields are briefly discussed.
15 pages, incl. 7 Postscript figures. Accepted by ApJ
Cited by in corpus (28)
- Filamentary structure of star-forming complexes
- The Physics of Star Formation
- Turbulent molecular clouds
- Magnetic processes in a collapsing dense core. I Accretion and Ejection
- Flows, Fragmentation, and Star Formation. I. Low-mass Stars in Taurus
- Filaments in Simulations of Molecular Cloud Formation
- The Lifetimes and Evolution of Molecular Cloud Cores
- Physical properties of interstellar filaments
- The Virial Balance of Clumps and Cores in Molecular Clouds
- Aspect Ratio Dependence of the Free-Fall Time for Non-Spherical Symmetries
- Modes of Star Formation in Finite Molecular Clouds
- The Free-Fall time of finite Sheets and Filaments
- Core and filament formation in magnetized, self-gravitating isothermal layers
- The Origin of OB Clusters: From 10 pc to 0.1 pc
- Filamentary condensations in a young cluster
- A molecular line study of the filamentary infrared dark cloud G304.74+01.32
- Tiny-Scale Molecular Structures in the Magellanic Clouds (Part 1)
- Shapes of Molecular Cloud Cores and the Filamentary Mode of Star Formation
- A New interpretation of chain galaxies at high redshift
- Self-similar condensation of rotating magnetized self-gravitating isothermal filaments
- Edge collapse and subsequent longitudinal accretion in Filament S242
- LABOCA mapping of the infrared dark cloud MSXDC G304.74+01.32
- Star-forming filament models
- Initial conditions for star formation in clusters: physical and kinematical structure of the starless core Oph A-N6
- Radiative Cooling Flows of Self-Gravitating Filamentary Clouds
- Semi-analytical homologous solutions of the gravo-magnetic contraction
- Self-Similar Equilibria of Self-Gravitating, Magnetized, Rotating, Isothermal Systems
- The potential of discs from a "mean Green function"