The manner in which warps in accretion disks evolve depends on the magnitude of the viscosity. For small viscosity (α < H/R), the warp evolves in a wave-like manner; for large viscosity, H/R < α ≪ 1, it evolves diffusively. Here, α is the viscosity parameter and H/R is the disk aspect ratio. Currently there is no simple set of equations that describes the evolution in both regimes. In this paper, we describe a possible solution to this problem and introduce a set of one-dimensional equations that describe the evolution of a warped disk that are applicable in both high- A nd low-viscosity regimes for arbitrary tilts, but small warps.
Martin, R., Lubow, S., Pringle, J., Franchini, A., Zhu, Z., Lepp, S., et al. (2019). Generalized Warped Disk Equations. THE ASTROPHYSICAL JOURNAL, 875(1), 5 [10.3847/1538-4357/ab0bb7].
Generalized Warped Disk Equations
Franchini A.;
2019
Abstract
The manner in which warps in accretion disks evolve depends on the magnitude of the viscosity. For small viscosity (α < H/R), the warp evolves in a wave-like manner; for large viscosity, H/R < α ≪ 1, it evolves diffusively. Here, α is the viscosity parameter and H/R is the disk aspect ratio. Currently there is no simple set of equations that describes the evolution in both regimes. In this paper, we describe a possible solution to this problem and introduce a set of one-dimensional equations that describe the evolution of a warped disk that are applicable in both high- A nd low-viscosity regimes for arbitrary tilts, but small warps.File | Dimensione | Formato | |
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