Ud. está consultando:

Trabajos publicados

Búsqueda avanzada

Búsqueda por tema: relativistic processes.
Resultado 7 de 16
 
Artículo de revista

Nonthermal processes in hot accretion flows onto supermassive black holes : an inhomogeneous model

E. M. Gutiérrez, F. L. Vieyro, and G. E. Romero.

Serie: Trabajos publicados del IAR ; no. 1606

Resumen: Context. Many low-redshift active galactic nuclei harbor a supermassive black hole accreting matter at low or medium rates. At such rates, the accretion flow usually consists of a cold optically thick disk, plus a hot, low density, collisionless corona. In the latter component, charged particles can be accelerated to high energies by various mechanisms. Aims. We aim to investigate, in detail, nonthermal processes in hot accretion flows onto supermassive black holes, covering a wide range of accretion rates and luminosities. Methods. We developed a model consisting of a thin Shakura-Sunyaev disk plus an inner hot accretion flow or corona, modeled as a radiatively inefficient accretion flow, where nonthermal processes take place. We solved the transport equations for relativistic particles and estimated the spectral energy distributions resulting from nonthermal interactions between the various particle species and the fields in the source. Results. We covered a variety of scenarios, from low accretion rates up to 10% of the Eddington limit, and identified the relevant cooling mechanisms in each case. The presence of hadrons in the hot flow is decisive for the spectral shape, giving rise to secondary particles and gamma-ray cascades. We applied our model to the source IC 4329A, confirming earlier results that showed evidence of nonthermal particles in the corona.

Publicado en

 
 
Registro 001796 · Modificado: 30/09/2021

Explorar índices alfabéticos


Ingrese las primeras letras del autor o título que busca. Omita artículos iniciales en títulos.
Recorrer el catálogo completo (por orden de ubicación del material)

Novedades

Enlaces