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On the origin of cyclotron lines in the spectra of X-ray pulsars

机译:在X射线脉冲条件光谱中的回旋线起源

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Cyclotron resonance scattering features are observed in the spectra of some X-ray pulsars and show significant changes in the line energy with the pulsar luminosity. In a case of bright sources, the line centroid energy is anti-correlated with the luminosity. Such a behaviour is often associated with the onset and growth of the accretion column, which is believed to be the origin of the observed emission and the cyclotron lines. However, this scenario inevitably implies large gradient of the magnetic field strength within the line-forming region, and it makes the formation of the observed line-like features problematic. Moreover, the observed variation of the cyclotron line energy is much smaller than could be anticipated for the corresponding luminosity changes. We argue that a more physically realistic situation is that the cyclotron line forms when the radiation emitted by the accretion column is reflected from the neutron star surface. The idea is based on the facts that a substantial part of column luminosity is intercepted by the neutron star surface and the reflected radiation should contain absorption features. The reflection model is developed and applied to explain the observed variations of the cyclotron line energy in a bright X-ray pulsar V 0332+53 over a wide range of luminosities.
机译:在一些X射线脉冲条的光谱中观察到回旋谐振散射特征,并显示脉冲亮度的线能量的显着变化。在光源的情况下,线质心能与发光度反相关。这种行为通常与吸收柱的发作和生长有关,被认为是观察到的发射和回旋线的起源。然而,这种情况不可避免地意味着线形成区域内的磁场强度的大梯度,并且它使得形成的线状特征成为有问题的。此外,观察到的回旋线能量的变化远小于可以对相应的发光度变化的预期。我们认为,更具物理上现实的情况是,当吸收塔发射的辐射从中子星表面反射时的回旋线形式。该想法基于中子星表面截取的大部分列亮度,反射辐射应含有吸收特征。开发并应用反射模型,以在广泛的亮度上解释明亮的X射线Pulsar V 0332 + 53中的回旋线能量的观察变化。

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