Hysteresis and thermal limit cycles in MRI simulations of accretion discs
arXiv:1207.4727 · doi:10.1111/j.1365-2966.2012.21748.x
Abstract
The recurrent outbursts that characterise low-mass binary systems reflect thermal state changes in their associated accretion discs. The observed outbursts are connected to the strong variation in disc opacity as hydrogen ionises near 5000 K. This physics leads to accretion disc models that exhibit bistability and thermal limit cycles, whereby the disc jumps between a family of cool and low accreting states and a family of hot and efficiently accreting states. Previous models have parametrised the disc turbulence via an alpha (or `eddy') viscosity. In this paper we treat the turbulence more realistically via a suite of numerical simulations of the magnetorotational instability (MRI) in local geometry. Radiative cooling is included via a simple but physically motivated prescription. We show the existence of bistable equilibria and thus the prospect of thermal limit cycles, and in so doing demonstrate that MRI-induced turbulence is compatible with the classical theory. Our simulations also show that the turbulent stress and pressure perturbations are only weakly dependent on each other on orbital times; as a consequence, thermal instability connected to variations in turbulent heating (as opposed to radiative cooling) is unlikely to operate, in agreement with previous numerical results. Our work presents a first step towards unifying simulations of full MHD turbulence with the correct thermal and radiative physics of the outbursting discs associated with dwarf novae, low-mass X-ray binaries, and possibly young stellar objects.
15 pages, 8 figures, 4 tables; MNRAS, accepted; v2 minor corrections and clarifications
References in corpus (6)
- MHD simulations of the magnetorotational instability in a shearing box with zero net flux. II. The effect of transport coefficients
- The "zeroth law" of turbulence: Isotropic turbulence simulations revisited
- Warp and eccentricity propagation in discs around black holes
- Exact shering box solutions of MHD flows with resistivity, viscosity and cooling
- Stabilization of radiation pressure dominated accretion disks by viscous fluctuations
- Long-term Nonlinear Behaviour of the Magnetorotational Instability in a Localised Model of an Accretion Disc
Cited by in corpus (24)
- On the Thermal Stability of Radiation Dominated Accretion Disks
- Convection Causes Enhanced Magnetic Turbulence in Accretion Disks in Outburst
- Relativistic reflection and reverberation in GX 339-4 with NICER and NuSTAR
- Magnetic Turbulence and Thermodynamics in the Inner Region of Protoplanetary Discs
- Global simulations of magnetorotational turbulence I: convergence and the quasi-steady state
- Impact of convection and resistivity on angular momentum transport in dwarf novae
- Magnetorotational dynamo chimeras. The missing link to turbulent accretion disk dynamo models?
- Global MHD Simulations of Accretion Disks in Cataclysmic Variables (CVs): II The Relative Importance of MRI and Spiral Shocks
- Magnetic wind-driven accretion in dwarf novae
- Turbulent and wind-driven accretion in dwarf novae threaded by a large scale magnetic field
- Discovering the Mass-Scaled Damping Timescale from Microquasars to Blazars
- The stress-pressure relationship in simulations of MRI-induced turbulence
- Dynamical structure of highly eccentric discs with applications to tidal disruption events
- Magnetic field transport in compact binaries
- Demonstration of a magnetic Prandtl number disc instability from first principles
- Stratified Global MHD Models of Accretion Disks in Semi-Detached Binaries
- Dissipative structures in magnetorotational turbulence
- Advection-dominated accretion flow for the varied transition luminosities in black hole X-ray binaries
- Bistable turbulence in strongly magnetised plasmas with a sheared mean flow
- QPOs in compact binaries from small scale eruptions in an inner magnetized disk
- Global simulations of magnetorotational turbulence III: influence of field configuration and mass injection
- Turbulent fluctuations and the excitation of Z Cam outbursts
- The stress-pressure lag in MRI turbulence and its implications for thermal instability in accretion discs
- Spiral-wave-driven accretion in quiescent dwarf novæ