Skip to content

Variability Associated with Alpha Accretion Disc Theory for Standard and Advection Dominated Discs

Eric G. Blackman

astro-pharXiv:astro-ph/9804266

Abstract

The α turbulent viscosity formalism for accretion discs must be interpreted as a mean field theory. The extent to which the disc scale exceeds that of the turbulence determines the precision of the predicted luminosity Lν. The assumption of turbulence and use of implies: (1) Field line stretching generates a magnetic pressure 2/6 of the total pressure generally, and a 1 to 1 relation between and the pressure ratio when shearing instabilities dominate the viscosity. (2) Large eddy sizes and speeds in typical advection dominated accretion flows (ADAFs) lead to a lower precision in Lν than for thin discs of a given total observation duration and central mass. The allowed variability (relative precision) at a particular frequency increases (decreases) with the size of the contributing region. For X-ray binary type ADAFs, the allowed variability is 5% at R 1000 Schwarzchild radii for averages over 1000sec. But for large galactic nuclei like NGC 4258 and M87, the relative precision error can approach 50-100% even at R 100 RS for currently available observation durations. More data are then required to compare with ADAF predictions.

Create a lesson