A new 2D stochastic methodology for simulating variable accretion discs: propagating fluctuations and epicyclic motion
arXiv:2306.07199 · doi:10.1093/mnras/stad2275
Abstract
Accretion occurs across a large range of scales and physical regimes. Despite this diversity in the physics, the observed properties show remarkably similarity. The theory of propagating fluctuations, in which broad-band variability within an accretion disc travel inwards and combine, has long been used to explain these phenomena. Recent numerical work has expanded on the extensive analytical literature but has been restricted to using the 1D diffusion equation for modelling the disc behaviour. In this work we present a novel numerical approach for 2D (vertically integrated), stochastically driven α-disc simulations, generalising existing 1D models. We find that the theory of propagating fluctuations translates well to 2D. However, the presence of epicyclic motion in 2D (which cannot be captured within the diffusion equation) is shown to have an important impact on local disc dynamics. Additionally, there are suggestions that for sufficiently thin discs the log-normality of the light-curves changes. As in previous work, we find that the break frequency in the luminosity power spectrum is strongly dependent on the driving timescale of the stochastic perturbations within the disc, providing a possible observational signature for probing the magnetorotational instability (MRI) dynamo. We also find that thinner discs are significantly less variable than thicker ones, providing a compelling explanation for the greater variability seen in the hard state vs the soft state of X-ray binaries. Finally, we consider the wide-ranging applications of our numerical model for use in other simulations.
28 pages, 22 figures, 10 tables (including 3 appendices). Resubmitted to MNRAS following corrections
References in corpus (14)
- PLUTO: a Numerical Code for Computational Astrophysics
- X-ray reverberation around accreting black holes
- Is Quasar Optical Variability a Damped Random Walk?
- Hydrodynamic Torques in Circumbinary Accretion Disks
- Optical variability of AGN in the PTF/iPTF survey
- Spectral-timing evidence for a Very High State in the Narrow Line Seyfert 1 Ark 564
- The Energy-dependent X-ray Timing Characteristics of the Narrow Line Seyfert 1 Mkn 766
- A white dwarf accreting planetary material determined from X-ray observations
- Propagating mass accretion rate fluctuations in X-ray binaries under the influence of viscous diffusion
- Non-Linear Dynamics of Accretion Disks with Stochastic Viscosity
- Looking for the underlying cause of black hole X-ray variability in GRMHD simulations
- The high energy probability distribution of accretion disc luminosity fluctuations
- Extending the theory of propagating fluctuations: the first fully relativistic treatment and analytical Fourier-Green's functions
- Constraining Energy-dependent emissivity profiles of AGN inflows