Nonlinear analysis of gravitational instability in a 3D gaseous disc

Fuente: arXiv
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Main Authors: Brown, Joshua J., Ogilvie, Gordon I.
Format: Preprint
Published: 2025
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author Brown, Joshua J.
Ogilvie, Gordon I.
author_facet Brown, Joshua J.
Ogilvie, Gordon I.
contents Astrophysical discs which are sufficiently massive and cool are linearly unstable to the formation of axisymmetric structures. In practice, linearly stable discs of surface density slightly below the threshold needed for this instability often form spiral structures, and can subsequently fragment or exhibit a state of self-sustained turbulence, depending on how rapidly the disc cools. This has raised the question of how such turbulence is possible in the linearly stable regime. We suggest a nonlinear mechanism for this phenomenon. We find analytically weakly nonlinear axisymmetric subcritical solitary equilibria which exist in linearly stable 3D discs that are close to the instability threshold. The energy of these 'soliton' solutions is only slightly higher than that of a uniform disc, and the structures themselves are expected to be unstable to non-axisymmetric perturbations. In this way, these subcritical solitary equilibria highlight a nonlinear instability and provide a possible pathway to a turbulent state in linearly stable discs.
format Preprint
id arxiv_https___arxiv_org_abs_2501_11658
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Nonlinear analysis of gravitational instability in a 3D gaseous disc
Brown, Joshua J.
Ogilvie, Gordon I.
Earth and Planetary Astrophysics
Fluid Dynamics
Astrophysical discs which are sufficiently massive and cool are linearly unstable to the formation of axisymmetric structures. In practice, linearly stable discs of surface density slightly below the threshold needed for this instability often form spiral structures, and can subsequently fragment or exhibit a state of self-sustained turbulence, depending on how rapidly the disc cools. This has raised the question of how such turbulence is possible in the linearly stable regime. We suggest a nonlinear mechanism for this phenomenon. We find analytically weakly nonlinear axisymmetric subcritical solitary equilibria which exist in linearly stable 3D discs that are close to the instability threshold. The energy of these 'soliton' solutions is only slightly higher than that of a uniform disc, and the structures themselves are expected to be unstable to non-axisymmetric perturbations. In this way, these subcritical solitary equilibria highlight a nonlinear instability and provide a possible pathway to a turbulent state in linearly stable discs.
title Nonlinear analysis of gravitational instability in a 3D gaseous disc
topic Earth and Planetary Astrophysics
Fluid Dynamics
url https://arxiv.org/abs/2501.11658