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Connections between jet formation and multiwavelength spectral evolution in black hole transients

机译:黑洞瞬变射流形成与多波长光谱演化的连接

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Multiwavelength observations are the key to understand conditions of jet formation in Galac?ic black hole transient (GBHT) Systems. By studying radio and optical-infrared evolution of such Systems during outburst decays, the compact jet formation can be traced. Comparing this with X-ray spectral and timing evolution ?e can obtain physical and geometrical conditions for jet formation, and study the, contribution of jets to X-ray emission. In this work, first X-ray evolution - jet relation for XTE J1752-223 will be discussed. This source had very good coverage in X-rays, optical, infrared and radio. A long exposure with INTEGRAL also allowed us to study gamma-ray behavior after the jet turns on. We will also show results from the analysis of data from GX 339-4 in the hard State with SUZAKU at low flux levels. The fits to iron line fluorescence emission show that the inner disk radius increases by a factor of >27 with respect to radii in bright states. This result, along with other disk radius measurements in the hard state will be discussed within the context of conditions for launching and sustaining jets.
机译:多波长观测是了解Galac的射流形成条件的关键,IC黑洞瞬态(GBHT)系统。通过在突出衰变期间研究这种系统的无线电和光红外进化,可以追踪紧凑的射流。将其与X射线光谱和定时演化进行比较?E可以获得喷射形成的物理和几何条件,并研究喷射器对X射线发射的贡献。在这项工作中,将讨论XTE J1752-223的第一个X射线演化 - 喷射关系。该来源在X射线,光学,红外线和无线电中具有非常好的覆盖范围。随着积分的长时间曝光也使我们能够在喷射器开启后研究伽马射线行为。我们还将在低通量水平下将来自GX 339-4的数据的数据分析显示出来自GX 339-4的数据。对铁线荧光发射的配合表明,内盘半径相对于明亮状态的半径增加了倍数> 27。该结果以及硬状态中的其他磁盘半径测量将在发射和维持喷射器的情况下讨论。

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