Transition from radiatively inefficient to cooling dominated phase in two temperature accretion disks around black holes


Autoria(s): Sinha, Monika; Rajesh, SR; Mukhopadhyay, Banibrata
Data(s)

01/12/2009

Resumo

We investigate the transition of a radiatively inefficient phase of a viscous two temperature accreting flow to a cooling dominated phase and vice versa around black holes. Based on a global sub-Keplerian accretion disk model in steady state, including explicit cooling processes self-consistently, we show that general advective accretion flow passes through various phases during its infall towards a black hole. Bremsstrahlung, synchrotron and inverse Comptonization of soft photons are considered as possible cooling mechanisms. Hence the flow governs a much lower electron temperature similar to 10(8) - 10(9.5) K compared to the hot protons of temperature similar to 10(10.2) - 10(11.8) K in the range of the accretion rate in Eddington units 0.01 less than or simiar to (M) over dot less than or similar to 100. Therefore, the solutions may potentially explain the hard X-rays and the gamma-rays emitted from AGNs and X-ray binaries. We finally compare the solutions for two different regimes of viscosity and conclude that a weakly viscous flow is expected to be cooling dominated compared to its highly viscous counterpart which is radiatively inefficient. The flow is successfully able to reproduce the observed minosities of the under-fed AGNs and quasars (e.g. Sgr A*), ultra-luminous X-ray sources (e.g. SS433), as well as the highly luminous AGNs and ultra-luminous quasars (e.g. PKS 0743-67) at different combinations of the mass accretion rate and ratio of specific heats.

Formato

application/pdf

Identificador

http://eprints.iisc.ernet.in/25353/1/17.pdf

Sinha, Monika and Rajesh, SR and Mukhopadhyay, Banibrata (2009) Transition from radiatively inefficient to cooling dominated phase in two temperature accretion disks around black holes. In: Research in astronomy and astrophysics, 9 (12). pp. 1331-1342.

Publicador

Institute of Physics

Relação

http://www.iop.org/EJ/abstract/1674-4527/9/12/005

http://eprints.iisc.ernet.in/25353/

Palavras-Chave #Astronomy and Astrophysics Programme
Tipo

Journal Article

PeerReviewed