Gravitational Instability of Rotating, Pressure-Confined, Polytropic Gas Disks With Vertical Stratification
arXiv:1210.6207 · doi:10.1088/0004-637X/761/2/131
Abstract
We investigate gravitational instability (GI) of rotating, vertically-stratified, pressure-confined, polytropic gas disks using linear stability analysis as well as analytic approximations. The disks are initially in vertical hydrostatic equilibrium and bounded by a constant external pressure. We find that GI of a pressure-confined disk is in general a mixed mode of the conventional Jeans and distortional instabilities, and is thus an unstable version of acoustic-surface-gravity waves. The Jeans mode dominates in weakly confined disks or disks with rigid boundaries. When the disk has free boundaries and is strongly pressure-confined, on the other hand, the mixed GI is dominated by the distortional mode that is surface-gravity waves driven unstable under own gravity and thus incompressible. We demonstrate that the Jeans mode is gravity-modified acoustic waves rather than inertial waves and that inertial waves are almost unaffected by self-gravity. We derive an analytic expression for the effective sound speed c_eff of acoustic-surface-gravity waves. We also find expressions for the gravity reduction factors relative to a razor-thin counterpart, appropriate for the Jeans and distortional modes. The usual razor-thin dispersion relation after correcting for c_eff and the reduction factors closely matches the numerical results obtained by solving a full set of linearized equations. The effective sound speed generalizes the Toomre stability parameter of the Jeans mode to allow for the mixed GI of vertically-stratified, pressure-confined disks.
18 pages, 13 figures; Accepted for publication in the ApJ
References in corpus (6)
- Theory of Star Formation
- On the onset of galactic winds in quiescent star forming galaxies
- The Thermal Regulation of Gravitational Instabilities in Protoplanetary Disks III. Simulations with Radiative Cooling and Realistic Opacities
- 3D Radiative Hydrodynamics for Disk Stability Simulations: A Proposed Testing Standard and New Results
- Gravitational Fragmentation of Expanding Shells. I. Linear Analysis
- The Carina Flare: What can fragments in the wall tell us?
Cited by in corpus (10)
- Unleashing Positive Feedback: Linking the Rates of Star Formation, Supermassive Black Hole Accretion and Outflows in Distant Galaxies
- A thermodynamic view of dusty protoplanetary disks
- Disruption of Molecular Clouds by Expansion of Dusty H II Regions
- Galaxy-scale AGN Feedback - Theory
- On the gravitational stability of gravito-turbulent accretion disks
- Linear stability of magnetized massive protoplanetary disks
- Equilibrium Sequences and Gravitational Instability of Rotating Isothermal Rings
- An MHD spectral theory approach to Jeans' magnetized gravitational instability
- Fragmentation of vertically stratified gaseous layers: monolithic or coalescence-driven collapse
- Analytic growth rate of gravitational instability in self-gravitating planar polytropes