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Theoretical models for stellar x-ray polarization in compact objects

机译:紧凑型物体恒星X射线极化的理论模型

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Degenerate stellar objects are expected to be strong sources of polarized x-ray emission. This is particularly true for strongly magnetized neutron stars, e.g., accretion or rotation powered pulsars and gamma ray bursters. In these, linear polarization degrees well in excess of 30% are expected. Weaker magnetic field stellar sources, such as old neutron stars in low mass binary systems, white dwarfs, and black holes are expected to have polarization degrees in the range 1 - 3%. A great interest attaches to the detection of polarization in these objects, since this would provide invaluable information concerning the geometry, radiation mechanism and magnetic field strength, necessary for testing and proving models of the structure and evolution of stars in their late stages. In this paper we review the theoretical models of the production of polarized radiation in compact stellar x-ray sources and discuss the possibility of detecting these properties using currently planned detectors to be flown in space.
机译:预期恒星物体预计将成为极化X射线排放的强烈源。这对于强磁化的中子恒星尤其如此,例如,凸起或旋转动力脉冲条和伽马射线爆破。在这些中,预期线性偏振度超过30%。较弱的磁场恒星源,例如低质量二元系统,白矮星和黑洞中的旧中子恒星,预计偏振度为1-3%。一种巨大的兴趣在这些物体中检测到偏振的检测,因为这将提供关于几何形状,辐射机构和磁场强度的宝贵信息,用于测试和证明其后期恒星结构的结构和演化模型。在本文中,我们审查了紧凑型X射线源中偏振辐射的生产的理论模型,并讨论了使用当前计划探测器在空间中飞行的这些性能的可能性。

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