Non-linear fluid dynamics of eccentric discs
arXiv:astro-ph/0102245 · doi:10.1046/j.1365-8711.2001.04416.x
Abstract
A new theory of eccentric accretion discs is presented. Starting from the basic fluid-dynamical equations in three dimensions, I derive the fundamental set of one-dimensional equations that describe how the mass, angular momentum and eccentricity vector of a thin disc evolve as a result of internal stresses and external forcing. The analysis is asymptotically exact in the limit of a thin disc, and allows for slowly varying eccentricities of arbitrary magnitude. The theory is worked out in detail for a Maxwellian viscoelastic model of the turbulent stress in an accretion disc. This generalizes the conventional alpha viscosity model to account for the non-zero relaxation time of the turbulence, and is physically motivated by a consideration of the nature of magnetohydrodynamic turbulence. It is confirmed that circular discs are typically viscously unstable to eccentric perturbations, as found by Lyubarskij, Postnov & Prokhorov, if the conventional alpha viscosity model is adopted. However, the instability can usually be suppressed by introducing a sufficient relaxation time and/or bulk viscosity. It is then shown that an initially uniformly eccentric disc does not retain its eccentricity as had been suggested by previous analyses. The evolutionary equations should be useful in many applications, including understanding the origin of planetary eccentricities and testing theories of quasi-periodic oscillations in X-ray binaries.
18 pages, 2 figures, to be published in MNRAS
Cited by in corpus (95)
- Massive black hole binary mergers within sub-pc scale gas discs
- Eccentricity Evolution for Planets in Gaseous Disks
- Viscous Effects on the Interaction between the Coplanar Decretion Disc and the Neutron Star in Be/X-Ray Binaries
- Axisymmetric simulations of magneto--rotational core collapse: dynamics and gravitational wave signal
- Doppler-imaging of the planetary debris disc at the white dwarf SDSS J122859.93+104032.9
- Simulations of eccentric disks in close binary systems
- On the interaction between tides and convection
- The Dynamics of Two Massive Planets on Inclined Orbits
- On the dynamics of magnetorotational turbulent stresses
- The dynamics of eccentric accretion discs in superhump systems
- Eccentricity evolution during planet-disc interaction
- Growth of eccentric modes in disc-planet interactions
- Secular interactions between inclined planets and a gaseous disk
- Planet formation in stellar binaries II: overcoming the fragmentation barrier in alpha Centauri and gamma Cephei-like systems
- Planet formation in binaries: dynamics of planetesimals perturbed by the eccentric protoplanetary disk and the secondary
- Planet formation in stellar binaries I: planetesimal dynamics in massive protoplanetary disks
- Constraints on the Stellar Mass Function from Stellar Dynamics at the Galactic Center
- The Kozai-Lidov Mechanism in Hydrodynamical Disks. II. Effects of binary and disk parameters
- On the saturation of corotation resonances: a numerical study
- Birth Locations of the Kepler Circumbinary Planets
- Three-dimensional eccentric discs around Be stars
- Long-Lived Eccentric Modes in Circumbinary Disks
- Rapid Evolution of the Gaseous Exoplanetary Debris Around the White Dwarf Star HE 1349--2305
- On the convective overstability in protoplanetary discs
- Recurring flares from supermassive black hole binaries: implications for tidal disruption candidates and OJ 287
- Generalised warped disk equations
- Local and global dynamics of eccentric astrophysical discs
- Secular evolution of eccentricity in protoplanetary discs with gap-opening planets
- Tidally distorted accretion discs in binary stars
- Viscous overstability and eccentricity evolution in three-dimensional gaseous discs
- Nozzle Shocks, Disk Tearing and Streamers Drive Rapid Accretion in 3D GRMHD Simulations of Warped Thin Disks
- Kozai-Lidov Disc Instability
- A Simple Family of Models for Eccentric Keplerian Fluid Disks
- The Local Instability of Steady Astrophysical Flows with non Circular Streamlines with Application to Differentially Rotating Disks with Free Eccentricity
- Fast and Slow Precession of Gaseous Debris Disks Around Planet-Accreting White Dwarfs
- Hydrodynamic instability in eccentric astrophysical discs
- Gravito-turbulence and the excitation of small-scale parametric instability in astrophysical discs
- Eccentric Tidal Disruption Event Disks around Supermassive Black Holes: Dynamics and Thermal Emission
- Shepherding in a Self-Gravitating Disk of Trans-Neptunian Objects
- Accretion of Gas Giants Constrained by the Tidal Barrier
- Warp and eccentricity propagation in discs around black holes
- Magnetorotational instability in eccentric disks
- Large-scale N-body simulations of the viscous overstability in Saturn's rings
- Eccentricity Growth Rates of Tidally Distorted Discs
- Planet formation in stellar binaries: Global simulations of planetesimal growth
- Schrödinger Evolution of Self-Gravitating Disks
- Non-linear hydrodynamic instability and turbulence in eccentric astrophysical discs with vertical structure
- Elliptical accretion disk as a model for tidal disruption events
- Hamiltonian hydrodynamics of eccentric discs
- The viscous overstability, nonlinear wavetrains, and finescale structure in dense planetary rings
- Tidal Disruption Event Disks around Supermassive Black Holes: Disk Warp and Inclination Evolution
- HFQPOs and discoseismic mode excitation in eccentric, relativistic discs. II. Magnetohydrodynamic simulations
- Eccentric Modes in Disks With Pressure and Self-Gravity
- On the secular behavior of dust particles in an eccentric protoplanetary disk with an embedded massive gas giant planet
- Investigating lack of accretion disk eccentricity growth in a global 3D MHD simulation of a superhump system
- Long-term evolution of accretion discs in Be/X-ray binaries
- Stability of the viscously spreading ring
- Probing the eccentricity in protostellar discs -- Modeling kinematics and morphologies
- Eccentric Minidisks in Accreting Binaries
- WISE J233237.05-505643.5: a Double-Peaked Broad-Lined AGN with Spiral-Shaped Radio Morphology
- A Simplified Model for the Secular Dynamics of Eccentric Discs and Applications to Planet-Disc Interactions
- Dynamical structure of highly eccentric discs with applications to tidal disruption events
- Eccentric debris disc morphologies I: exploring the origin of apocentre and pericentre glows in face-on debris discs
- One-armed spiral structure of accretion discs induced by a phase-dependent mass transfer in Be/X-ray binaries
- HFQPOs and discoseismic mode excitation in eccentric, relativistic discs. I. Hydrodynamic simulations
- Long-Lived Eccentricities in Accretion Disks
- Nonlinear hydrodynamical evolution of eccentric Keplerian discs in two dimensions: validation of secular theory
- The spectroscopic signature of hot Jupiters in FU Orionis objects
- Accretion disc dynamics in extreme mass ratio compact binaries
- Properties and stability of freely propagating nonlinear density waves in accretion disks
- Oscillations of the Inner Regions of Viscous Accretion Disks
- Importance of magnetic fields in highly eccentric discs with applications to tidal disruption events
- An affine model of the dynamics of astrophysical discs
- Secular Evolution Driven by Massive Eccentric Disks/Rings: An Apsidally Aligned Case
- Nonlinear evolution of the magnetorotational instability in eccentric disks
- Ring Formation in Protoplanetary Disks Driven by an Eccentric Instability
- On the settling of small grains in dusty discs: analysis and formulas
- On the Flaring of Jet-sustaining Accretion Disks
- WD 1145+017: Alternative models of the atmosphere, dust clouds, and gas rings
- Evolution of Centauri B's protoplanetary disc
- Superorbital periods of Be/X-ray binaries driven by stellar spin precession
- Theory of disk accretion onto supermassive black holes
- Turbulent Magnetohydrodynamic Elasticity: I. Boussinesq-like Approximations for Steady Shear
- Focusing of nonlinear eccentric waves in astrophysical discs
- Three-dimensional simulations of the magnetorotational instability in eccentric disks
- Three routes to jet collimation by the Balbus-Hawley magnetorotational instability
- Focusing of nonlinear eccentric waves in astrophysical discs. II. Excitation and damping of tightly-wound waves
- New migration patterns in high planet-star mass ratio systems in disks with low viscosity
- The stress-pressure lag in MRI turbulence and its implications for thermal instability in accretion discs
- Numerical Insights into Disk Accretion, Eccentricity, and Kinematics in the Class 0 phase
- Linear dynamics of weakly viscous accretion disks: A disk analog of Tollmien-Schlichting waves
- Linear and nonlinear eccentric mode evolution in unstratified MHD discs
- Insights from Analytical Theory of Eccentric Circumbinary Disks
- Disc breaking through forced eccentricity growth
- Dynamical Thin Disks