Viscosity in Selfgravitating Accretion Disks
Abstract
We show that the standard model for geometrically thin accretion disks (alpha-disks) leads to inconsistencies if selfgravity plays a role. This problem arises from the parametrization of viscosity in terms of local sound velocity and vertical disk scale height. A viscosity prescription based on turbulent flows at the critical effective Reynolds number allows for consistent models of thin selfgravitating disks, and recovers the alpha-disk solution as the limiting case of negligible selfgravity. We suggest that such selfgravitating disks may explain the observed spectra of protoplanetary disks and yield a natural explanation for the radial motions inferred from the observed metallicity gradients in disk galaxies.
Keywords
Cite
@article{arxiv.astro-ph/9702132,
title = {Viscosity in Selfgravitating Accretion Disks},
author = {W. J. Duschl and Peter A. Strittmatter and Peter L. Biermann},
journal= {arXiv preprint arXiv:astro-ph/9702132},
year = {2007}
}
Comments
10 pages, LaTeX, AAS 2 column preprint style (aas2pp4.sty), submitted to ApJ