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首页> 外文期刊>The Astrophysical journal >X-RAY SPECTRAL SIGNATURES OF THE PHOTON BUBBLE MODEL FOR ULTRALUMINOUS X-RAY SOURCES
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X-RAY SPECTRAL SIGNATURES OF THE PHOTON BUBBLE MODEL FOR ULTRALUMINOUS X-RAY SOURCES

机译:超光X射线源光子气泡模型的X射线光谱特征

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摘要

The nature of ultraluminous X-ray sources (ULXs) in nearby galaxies is one of the major open questions in modern X-ray astrophysics. One possible explanation for these objects is an inhomogeneous, radiation-dominated accretion disk around a ~10 M_☉ black hole, the so-called photon bubble model. While previous studies of this model have focused primarily on its radiation hydrodynamics aspects, in this paper, we provide an analysis of its X-ray spectral (continuum and possible edge and line) characteristics. Compton reflection between high- and low-density regions in the disk may provide the key to distinguishing this model from others, such as accretion onto an intermediate-mass black hole. We couple a Monte Carlo-Fokker-Planck radiation transport code with the XSTAR code for reflection to simulate the photon spectra produced in a photon bubble model for ULXs. We find that reflection components tend to be very weak and in most cases not observable, and we make predictions for the shape of the high-energy Comptonizing spectra. In many cases, the Comptonization dominates the spectra even down to approximately a few keV. In one simulation, a ~9 keV feature was found, which may be considered a signature of photon bubbles in ULXs; furthermore, we make predictions of high-energy power laws which may be observed by future instruments.
机译:邻近星系中超发光X射线源(ULX)的性质是现代X射线天体物理学中的主要开放问题之一。对这些物体的一种可能解释是围绕一个约10M_☉黑洞的不均匀的,辐射为主的吸积盘,即所谓的光子气泡模型。尽管此模型的先前研究主要集中在其辐射流体动力学方面,但在本文中,我们提供了对其X射线光谱(连续谱以及可能的边线)特征的分析。磁盘中高密度和低密度区域之间的康普顿反射可能为将该模型与其他模型区分开来的关键,例如吸积到中等质量黑洞上。我们将Monte Carlo-Fokker-Planck辐射传输代码与XSTAR代码耦合以进行反射,以模拟在ULX的光子气泡模型中产生的光子光谱。我们发现反射分量往往非常微弱,并且在大多数情况下是不可观察的,并且我们对高能Comptonizing光谱的形状进行了预测。在许多情况下,甚至在低至大约keV的情况下,康普顿化作用仍可支配光谱。在一次仿真中,发现了一个〜9 keV的特征,可以认为它是ULX中光子气泡的特征。此外,我们对高能功率定律进行了预测,将来的仪器可能会观察到这些定律。

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