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Comptonization and the Spectra of Accretion-Powered X-Ray Pulsars

机译:COMPONIZION和ACCRETION功率X射线PULSAR的光谱

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Accretion-powered X-ray pulsars are among the most luminous X-ray sources in the Galaxy. However, despite decades of theoretical and observational work since their discovery, no satisfactory model for the formation of the observed X-ray spectra has emerged. In this paper, we report on a self-consistent calculation of the spectrum emerging from a pulsar accretion column that includes an explicit treatment of the bulk and thermal Comptonization occurring in the radiation-dominated shocks that form in the accretion flows. Using a rigorous eigenfunction expansion method, we obtain a closed-form expression for the Green's function describing the upscattering of monochromatic radiation injected into the column. The Green's function is convolved with bremsstrahlung, cyclotron, and blackbody source terms to calculate the emergent photon spectrum. We show that energization of photons in the shock naturally produces an X-ray spectrum with a relatively flat continuum and a high-energy exponential cutoff. Finally, we demonstrate that our model yields good agreement with the spectra of the bright pulsar Her X-1 and the low luminosity X Per.
机译:Accretion-Powered X射线Pulsar是星系中最明亮的X射线源。然而,尽管自发现以来几十年的理论和观察工作,但没有出现了形成观察到的X射线光谱的令人满意的模型。在本文中,我们报告了从脉冲柱增生柱出现的频谱的自一致性计算,该脉冲柱出现的散热性和热复合化在辐射占状的冲击中发生的散装和热复合性的谱处理的频谱进行了明确的处理。使用严谨的特征函数扩展方法,我们获得了绿色函数的闭合表达式,描述了注入柱子的单色辐射的上散射。绿色的功能与Bremsstrahlung,Cyclotron和Blackbody源术语卷绕,以计算出急的光子谱。我们表明,震动中的光子的通电自然地产生具有相对扁平的连续内和高能指数截止的X射线光谱。最后,我们证明我们的模型与亮脉冲X-1的光谱和低光度X的光谱产生良好的一致性。

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