Characterising the Gravitational Instability in Cooling Accretion Discs
arXiv:0811.3629 · doi:10.1111/j.1365-2966.2008.14275.x
Abstract
We perform numerical analyses of the structure induced by gravitational instabilities in cooling gaseous accretion discs. For low enough cooling rates a quasi-steady configuration is reached, with the instability saturating at a finite amplitude in a marginally stable disc. We find that the saturation amplitude scales with the inverse square root of the cooling parameter beta = t_cool / t_dyn, which indicates that the heating rate induced by the instability is proportional to the energy density of the induced density waves. We find that at saturation the energy dissipated per dynamical time by weak shocks due is of the order of 20 per cent of the wave energy. From Fourier analysis of the disc structure we find that while the azimuthal wavenumber is roughly constant with radius, the mean radial wavenumber increases with radius, with the dominant mode corresponding to the locally most unstable wavelength. We demonstrate that the density waves excited in relatively low mass discs are always close to co-rotation, deviating from it by approximately 10 per cent. This can be understood in terms of the flow Doppler-shifted phase Mach number -- the pattern speed self-adjusts so that the flow into spiral arms is always sonic. This has profound effects on the degree to which transport through self-gravity can be modelled as a viscous process. Our results thus provide (a) a detailed description of how the self-regulation mechanism is established for low cooling rates, (b) a clarification of the conditions required for describing the transport induced by self-gravity through an effective viscosity, (c) an estimate of the maximum amplitude of the density perturbation before fragmentation occurs, and (d) a simple recipe to estimate the density perturbation in different thermal regimes.
16 pages, 22 figures. Accepted for publication in MNRAS 11 November 2008
References in corpus (9)
- SPLASH: An interactive visualisation tool for Smoothed Particle Hydrodynamics simulations
- Supermassive black hole formation during the assembly of pre-galactic discs
- Simulations of star formation in a gaseous disc around sgr A* - a failed AGN
- Brown dwarf formation by gravitational fragmentation of massive, extended protostellar discs
- Fragmentation of gravitationally unstable gaseous protoplanetary disks with radiative transfer
- The Thermal Regulation of Gravitational Instabilities in Protoplanetary Disks III. Simulations with Radiative Cooling and Realistic Opacities
- Can giant planets form by gravitational fragmentation of discs?
- 3D Radiative Hydrodynamics for Disk Stability Simulations: A Proposed Testing Standard and New Results
- The response of self-graviting protostellar discs to slow reduction in cooling timescale: the fragmentation boundary revisited
Cited by in corpus (102)
- Gravitational Instabilities in Circumstellar Disks
- Phantom: A smoothed particle hydrodynamics and magnetohydrodynamics code for astrophysics
- Dust size distributions in coagulation/fragmentation equilibrium: Numerical solutions and analytical fits
- Hydrodynamics of circumbinary accretion: Angular momentum transfer and binary orbital evolution
- Shadows cast on the transition disk of HD 135344B. Multiwavelength VLT/SPHERE polarimetric differential imaging
- Testing the theory of grain growth and fragmentation by millimeter observations of protoplanetary disks
- Rotationally-supported disks around Class I sources in Taurus: disk formation constraints
- Grain growth in the envelopes and disks of Class I protostars
- Accretion Outbursts in Self-gravitating Protoplanetary Disks
- Spiral Arms in Gravitationally Unstable Protoplanetary Disks as Imaged in Scattered Light
- Rings and gaps in the disc around Elias 24 revealed by ALMA
- Evidence for the start of planet formation in a young circumstellar disk
- Towards a population synthesis model of self-gravitating disc fragmentation and tidal downsizing II: The effect of fragment-fragment interactions
- Scattered light images of spiral arms in marginally gravitationally unstable discs with an embedded planet
- On the gap-opening criterion of migrating planets in protoplanetary disks
- Spiral arms in the proto-planetary disc HD100453 detected with ALMA: evidence for binary-disc interaction and a vertical temperature gradient
- Dust trapping by spiral arms in gravitationally unstable protostellar discs
- Spiral Arms in Disks: Planets or Gravitational Instability?
- Convergence of the critical cooling rate for protoplanetary disk fragmentation achieved; the key role of numerical dissipation of angular momentum
- Spiral Arms and a Massive Dust Disk with non-Keplerian Kinematics: Possible Evidence for Gravitational Instability in the Disk of Elias 2-27
- The Ring Structure in the MWC 480 Disk Revealed by ALMA
- Multiple spiral arms in the disk around intermediate-mass binary HD 34700A
- A revised condition for self-gravitational fragmentation of protoplanetary disks
- Gas infall and radial transport in cosmological simulations of Milky Way-mass disks
- A dynamical measurement of the disk mass in Elias 2-27
- Gravitational instability in protostellar disks at low metallicities
- Spin alignment and differential accretion in merging black hole binaries
- Collision velocity of dust grains in self-gravitating protoplanetary discs
- Convergence of simulations of self-gravitating accretion discs II: Sensitivity to the implementation of radiative cooling and artificial viscosity
- Spiral arms and instability within the AFGL 4176 mm1 disc
- How to Detect the Signatures of Self-Gravitating Circumstellar Discs with the Atacama Large Millimetre/sub-millimetre Array
- In-situ extreme mass ratio inspirals via sub-parsec formation and migration of stars in thin, gravitationally unstable AGN discs
- Gravitational instability in a planet-forming disk
- Gravito-Turbulent Disks in 3D: Turbulent Velocities vs. Depth
- A highly non-Keplerian protoplanetary disc: Spiral structure in the gas disc of CQ Tau
- Viscosity prescription for gravitationally unstable accretion disks
- Save the Planet, Feed the Star: How Super-Earths Survive Migration and Drive Disk Accretion
- Spiral arms in thermally stratified protoplanetary discs
- Global simulations of self-gravitating magnetized protoplanetary disks
- Is the spiral morphology of the Elias 2-27 circumstellar disc due to gravitational instability?
- Smoothed particle hydrodynamics simulations of gas and dust mixtures
- Are Elias 2-27's spiral arms driven by self-gravity, or by a companion? A comparative spiral morphology study
- Core-assisted gas capture instability: a new mode of giant planet formation by gravitationally unstable discs
- Directly observing continuum emission from self-gravitating spiral waves
- Characterizing gravito-turbulence in 3D: turbulent properties and stability against fragmentation
- On the gravitational stability of gravito-turbulent accretion disks
- A Keplerian disk with a four-arm spiral birthing an episodically accreting high-mass protostar
- Planetesimal formation in self-gravitating discs: the effects of particle self-gravity and back-reaction
- On the fragmentation boundary in magnetised self-gravitating discs
- Circumbinary disc self-gravity governing supermassive black hole binary mergers
- Quantification of stochastic fragmentation of self-gravitating discs
- A "Rosetta Stone" for protoplanetary disks: The synergy of multi-wavelength observations
- Self-gravitating disc candidates around massive young stars
- Spiral structures in gravito-turbulent gaseous disks
- Nonlinear outcome of gravitational instability in an irradiated protoplanetary disc
- Dust dynamics in 2D gravito-turbulent disks
- Investigating Protoplanetary Disk Cooling through Kinematics: Analytical GI Wiggle
- Observing substructure in circumstellar discs around massive young stellar objects
- Probing the presence of planets in transition discs' cavities via warps: the case of TW Hya
- Dust hot spots at 10 au scales around the Class 0 binary IRAS 16293-2422 A: a departure from the passive irradiation model
- The role of the drag force in the gravitational stability of dusty planet forming disc -- I. Analytical theory
- Direct Formation of Planetary Embryos in Self-Gravitating Disks
- Planetesimal formation in self-gravitating discs -- dust trapping by vortices
- Planet Migration in Self-Gravitating Discs: Survival of Planets
- Signs of late infall and possible planet formation around DR Tau using VLT/SPHERE and LBTI/LMIRCam
- The role of the drag force in the gravitational stability of dusty planet-forming disc -- II. Numerical simulations
- Particle Dynamics in 3D Self-gravitating Disks I: Spirals
- Thermal evolution of protoplanetary disks: from -cooling to decoupled gas and dust temperatures
- Particle Dynamics in 3D Self-gravitating Disks II: Strong Gas Accretion and Thin Dust Disks
- The evolution of self-gravitating accretion discs
- The Role of the Cooling Prescription for Disk Fragmentation: Numerical Convergence & Critical Cooling Parameter in Self-Gravitating Disks
- Gravitational instabilities in a protosolar-like disc II: continuum emission and mass estimates
- The applicability of the viscous α-parameterization of gravitational instability in circumstellar disks
- Gravitoviscous Protoplanetary Discs with a Dust Component. IV. Disc Outer Edges, Spectral Indices, and Opacity Gaps
- Classifying and modelling spiral structures in hydrodynamic simulations of astrophysical discs
- Dust Growth and Dynamics in Protoplanetary Nebulae: Implications for Opacity, Thermal Profile and Gravitational Instability
- Gravito-turbulence in irradiated protoplanetary discs
- The observational impact of dust trapping in self-gravitating discs
- Filling in the Gaps: Can Gravitationally Unstable Discs Form the Seeds of Gas Giant Planets?
- The impact of numerical oversteepening on the fragmentation boundary in self-gravitating disks
- The link between infall location, early disc size, and the fraction of self-gravitationally fragmenting discs
- Evolution of a Viscous Protoplanetary Disk with Convectively Unstable Regions
- Circumstellar discs: What will be next?
- Gravito-turbulence in local disk simulations with an adaptive moving mesh
- Self-similar Evolution of Self-Gravitating Viscous Accretion Discs
- 1+1D implicit disk computations
- Global Spiral Density Wave Modes in Protoplanetary Disks: Morphology of Spiral Arms
- Primordial dust rings, hidden dust mass, and the first generation of planetesimals in gravitationally unstable protoplanetary disks
- The Role of Angular Momentum Transport in Establishing the Accretion Rate--Protostellar Mass Correlation
- Multi-scale simulations of black hole accretion in barred galaxies: Self-gravitating disk models
- DIPSY: A new Disc Instability Population SYnthesis, I. Modeling, evolution of individual systems, and tests
- Continuing to Hide Signatures of Gravitational Instability in Protoplanetary Discs with Planets
- Angular momentum transport via gravitational instability in the Elias 2-27 disc
- Properties of an accretion disc with a power-law stress-pressure relationship
- Winding Motion of Spirals in a Gravitationally Unstable Protoplanetary Disk
- Structure of radiation dominated gravitoturbulent quasar discs
- Protostellar disc structure and dynamics during star formation from cloud-scale initial conditions
- Constraining protoplanetary disc mass using the GI wiggle
- Dust growth and planet formation by disc fragmentation
- A Parameter Space Exploration of High Resolution Numerically Evolved Early Type Galaxies Including AGN Feedback and Accurate Dynamical Treatment of Stellar Orbits
- Gravitoturbulent dynamo in global simulations of gaseous disks
- Gravitational instability in planet-forming discs