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首页> 外文期刊>The Astrophysical journal >A SUPER-EDDINGTON, COMPTON-THICK WIND IN GRO J1655–40?
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A SUPER-EDDINGTON, COMPTON-THICK WIND IN GRO J1655–40?

机译:GRO J1655–40中的超级爱丁顿,康普顿厚风?

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During its 2005 outburst, GRO J1655–40 was observed at high spectral resolution with the Chandra High-Energy Transmission Grating Spectrometer, revealing a spectrum rich with blueshifted absorption lines indicative of an accretion disk wind—apparently too hot, too dense, and too close to the black hole to be driven by radiation pressure or thermal pressure (Miller et al.). However, this exotic wind represents just one piece of the puzzle in this outburst, as its presence coincides with an extremely soft and curved X-ray continuum spectrum, remarkable X-ray variability (Uttley & Klein-Wolt), and a bright, unexpected optical/infrared blackbody component that varies on the orbital period. Focusing on the X-ray continuum and the optical/infrared/UV spectral energy distribution, we argue that the unusual features of this "hypersoft state" are natural consequences of a super-Eddington Compton-thick wind from the disk: the optical/infrared blackbody represents the cool photosphere of a dense, extended outflow, while the X-ray emission is explained as Compton scattering by the relatively cool, optically thick wind. This wind obscures the intrinsic luminosity of the inner disk, which we suggest may have been at or above the Eddington limit.
机译:在2005年爆发期间,使用钱德拉高能透射光栅光谱仪以高光谱分辨率观察到了GRO J1655–40,该光谱揭示了富含蓝移吸收线的光谱,表明吸积了磁盘风-显然太热,太密和太近黑洞受辐射压力或热压力驱动(Miller等人)。但是,这种奇异的风只是这个爆发中的难题之一,因为它的存在与极其柔软和弯曲的X射线连续谱,显着的X射线可变性(Uttley&Klein-Wolt)以及明亮,出乎意料的相吻合光学/红外黑体分量随轨道周期而变化。着眼于X射线连续谱和光学/红外/紫外光谱能量分布,我们认为这种“超软状态”的不寻常特征是磁盘上超爱丁顿·康普顿厚的风的自然结果:光学/红外黑体表示密集的,扩展的流出的冷光球,而X射线的发射被解释为相对凉爽,光学上较厚的风的康普顿散射。这种风掩盖了内部磁盘的固有亮度,我们建议该亮度可能已达到或超过爱丁顿极限。

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