论文标题

X射线脉冲星的频谱形成以非常低的质量增生速率:蒙特卡罗方法

Spectrum formation in X-ray pulsars at very low mass accretion rate: Monte-Carlo approach

论文作者

Mushtukov, Alexander A., Suleimanov, Valery F., Tsygankov, Sergey S., Zwart, Simon Portegies

论文摘要

最近发现,X射线脉冲星向低光度状态的过渡($ l \ lysSim10^{35} \,{\ rm erg \ \,s^{ - 1}} $)伴随着巨大的光谱变化。也就是说,具有高能量临界值的典型幂律样光谱会转变为两组分结构,其顶部可能具有可能的回旋子吸收特征。有人提出,这些光谱特性可以通过在中子恒星的大气中发射的中子恒星大气中的发射,这是由电子碰撞激发到上层兰道水平引起的,并通过电子气体进一步构成光子。后者有望在大气的薄层中过热。在本文中,我们对中子星的大气中的辐射转移进行了蒙特卡洛模拟,同时通过热分布电子来考虑偏振X射线光子的谐振散射。光谱形状显示出在软X射线($ \ Lessim 10 \,{\ rm kev} $)和靠近回旋体散射功能的柔性X射线中极为极化。在低光度状态下,测试了我们的数值模拟的结果。我们表明,脉冲星的光谱形状可以由所提出的理论模型再现。讨论了该发现在积聚中子恒星的观察性研究中的应用。

It has been recently discovered that the transition of X-ray pulsars to the low luminosity state ($L\lesssim10^{35}\,{\rm erg\,s^{-1}}$) is accompanied by a dramatic spectral change. Namely, the typical power-law-like spectrum with high energy cutoff transforms into a two-component structure with a possible cyclotron absorption feature on top of it. It was proposed that these spectral characteristics can be explained qualitatively by the emission of cyclotron photons in the atmosphere of the neutron star caused by collisional excitation of electrons to upper Landau levels and further comptonization of the photons by electron gas. The latter is expected to be overheated in a thin top layer of the atmosphere. In this paper, we perform Monte Carlo simulations of the radiative transfer in the atmosphere of an accreting neutron star while accounting for a resonant scattering of polarized X-ray photons by thermally distributed electrons. The spectral shape is shown to be strongly polarization-dependent in soft X-rays ($\lesssim 10\,{\rm keV}$) and near the cyclotron scattering feature. The results of our numerical simulations are tested against the observational data of X-ray pulsar A 0535+262 in the low luminosity state. We show that the spectral shape of the pulsar can be reproduced by the proposed theoretical model. The applications of the discovery to the observational studies of accreting neutron stars are discussed.

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