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首页> 外文期刊>Journal of astrophysics and astronomy >High energy power-law tail in X-ray binaries and bulk Comptonization due to an outflow from a disk
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High energy power-law tail in X-ray binaries and bulk Comptonization due to an outflow from a disk

机译:X射线二进制文件中的高能幂律尾部以及由于从磁盘流出而导致的大量Comptonization

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摘要

We study the high energy power-law tail emission of X-ray binaries (XRBs) by a bulk Comptonization process which is usually observed in the very high soft (VHS) state of black hole (BH) XRBs and the high soft (HS) state of the neutron star (NS) and BH XRBs. Earlier, to generate the power-law tail in bulk Comptonization framework, a free-fall converging flow into BH or NS had been considered as a bulk region. In this work, for a bulk region we consider mainly an outflow geometry from the accretion disk which is bounded by a torus surrounding the compact object. We have two choices for an outflow geometry: (i) collimated flowand (ii) conical flow of opening angle $heta_b$ and the axis is perpendicular to the disk. We also consider an azimuthalvelocity of the torus fluids as a bulk motion where the fluids are rotating around the compact object (a torus flow). We find that the power-law tail can be generated in a torus flow having large optical depth and bulk speed (0.75$c$), and in conical flow with $heta_b$ $sim 30^{circ}$ for a low value of Comptonizing medium temperature. Particularly, in conical flow the low opening angle is more favourable to generate the power-law tail in both theHS state and the VHS state. We notice that when the outflow is collimated, then the emergent spectrum does not have power-law component for a low Comptonizing medium temperature.
机译:我们研究了通过大量Comptonization过程X射线二进制(XRB)的高能幂律尾部发射,通常在黑洞(BH)XRB的非常高软度(VHS)和高软(HS)状态下观察到中子星(NS)和BH XRB的状态。早先,为了在块体Comptonization框架中生成幂律尾部,自由落入BH或NS的会聚流被视为块体区域。在这项工作中,对于大块区域,我们主要考虑吸积盘的流出几何形状,该形状由围绕紧凑对象的圆环界定。对于流出几何形状,我们有两种选择:(i)准直流和(ii)开口角为 theta_b $且轴垂直于圆盘的圆锥形流。我们还将环面流体的方位角速度视为整体运动,其中流体绕着紧致物体旋转(环面流)。我们发现幂律尾部可以在具有较大光学深度和体积速度(> 0.75 $ c $)的圆环流中生成,并且在$ theta_b $> $ sim 30 ^ { circ} $的圆锥形流中生成较低的Comptonizing介质温度值。特别地,在圆锥形流动中,低打开角度更有利于在HS状态和VHS状态下产生幂律尾部。我们注意到,在对流出物进行准直时,对于较低的Comptonizing介质温度,出射光谱不具有幂律分量。

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