EFFECT OF CORIOLIS FORCE ON ACCRETION FLOWS AROUND ROTATING COMPACT OBJECT

Author:

PRASANNA A. R.1,MUKHOPADHYAY BANIBRATA1

Affiliation:

1. Theoretical Physics Group, Physical Research Laboratory, Navrangpura, Ahmedabad-380009, India

Abstract

Using the generalised set of fluid equations that include the "Coriolis force" along with the centrifugal and pressure gradient forces, we have reanalysed the class of self-similar solutions, with the pseudo-Newtonian potential. We find that the class of solutions is well behaved for almost the entire parameter space except for a few selected combinations of γ and α for the co-rotating flow. The analysis of the Bernoulli number shows that whereas it remains positive for co-rotating flow for f > 1/3, for the counter-rotating flow it does admit both positive and negative values, indicating the possibility of energy transfer in either direction.

Publisher

World Scientific Pub Co Pte Lt

Subject

Space and Planetary Science,Astronomy and Astrophysics,Mathematical Physics

Reference22 articles.

1. R. Narayan, R. Mahadevan and E. Quataert, Theory of Black Hole Accretion Disks, eds. M. A. Abramowicz, G. Bjornsson and J. E. Pringle (Cambridge University Press, 1998) p. 148.

2. Advection-dominated accretion: A self-similar solution

3. Thermal equilibria of accretion disks

4. Unified description of accretion flows around black holes

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