4.6 Article

A unified accretion-ejection paradigm for Black Hole X-ray binaries

期刊

ADVANCES IN SPACE RESEARCH
卷 38, 期 12, 页码 2909-2911

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ELSEVIER SCI LTD
DOI: 10.1016/j.asr.2006.02.069

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microquasars; jets; accretion; multiwavelength; model

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We present a unified accretion-ejection picture that explains the different spectral state of Black Hole X-ray binaries (BHXrB) from radio to X/gamma-rays. In this view, the central region of BHXrB has a multi-flow configuration which consists in (1) an outer standard accretion disc, (2) an inner magnetized accretion disc driving, (3) a self-collimated electron-proton MH D jet, surrounding and (4) a relativistic electron-positron beam when adequate conditions are met. This picture provides a simple and unified explanation to the various canonical spectral states of BH X-ray binaries, by varying the transition radius r(J) between the inner disc driving jets and the Outer standard disc. in this framework, large r(J) correspond to Quiescent and Hard states while small r(J) correspond to Thermal Dominant ones. In between these two extremes, r(J) can reach values that switches on the pair cascade process giving birth to a relativistic electron-positron beam. This would correspond to the bright intermediate state. (C) 2006 COSPAR. Published by Elsevier Ltd. All rights reserved.

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