Numerical Simulation of Viscous Shocked Accretion Flows Around Black Holes

Nonfiction, Science & Nature, Science, Physics, Mathematical Physics, Astrophysics & Space Science
Cover of the book Numerical Simulation of Viscous Shocked Accretion Flows Around Black Holes by Kinsuk Giri, Springer International Publishing
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Author: Kinsuk Giri ISBN: 9783319095400
Publisher: Springer International Publishing Publication: August 30, 2014
Imprint: Springer Language: English
Author: Kinsuk Giri
ISBN: 9783319095400
Publisher: Springer International Publishing
Publication: August 30, 2014
Imprint: Springer
Language: English

The work developed in this thesis addresses very important and relevant issues of accretion processes around black holes. Beginning by studying the time variation of the evolution of inviscid accretion discs around black holes and their properties, the author investigates the change of the pattern of the flows when the strength of the shear viscosity is varied and cooling is introduced. He succeeds to verify theoretical predictions of the so called Two Component Advective Flow (TCAF) solution of the accretion problem onto black holes through numerical simulations under different input parameters. TCAF solutions are found to be stable. And thus explanations of spectral and timing properties (including Quasi-Period Oscillations, QPOs) of galactic and extra-galactic black holes based on shocked TCAF models appear to have a firm foundation.

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The work developed in this thesis addresses very important and relevant issues of accretion processes around black holes. Beginning by studying the time variation of the evolution of inviscid accretion discs around black holes and their properties, the author investigates the change of the pattern of the flows when the strength of the shear viscosity is varied and cooling is introduced. He succeeds to verify theoretical predictions of the so called Two Component Advective Flow (TCAF) solution of the accretion problem onto black holes through numerical simulations under different input parameters. TCAF solutions are found to be stable. And thus explanations of spectral and timing properties (including Quasi-Period Oscillations, QPOs) of galactic and extra-galactic black holes based on shocked TCAF models appear to have a firm foundation.

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