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Hard X-ray polarimetry with Astrosat-CZTI

机译:用Astrosat-CZTI进行硬X射线旋光法

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X-ray polarimetry is largely an unexplored area of an otherwise mature field of X-ray astronomy. Except for a few early attempts during the 1970s, no dedicated X-ray polarimeter has been flown during the past four decades. On the other hand, the scientific value of X-ray polarization measurement has been well known for a long time, and there has been significant technical progress in developing sensitive X-ray polarimeters in recent years. But there are no approved dedicated X-ray polarimetric experiments to be flown in the near future, so it is important to explore the polarimetric capabilities of other existing or planned instruments and examine whether they can provide significant astrophysical polarization measurements. In this paper, we present experimental results to show that the CZTI instrument onboard the forthcoming Indian astronomy mission, Astrosat, will be able to provide sensitive measurements of X-ray polarization in the energy range of 100?300 keV. CZTI will be able to constrain any intrinsic polarization greater than ~40% for bright X-ray sources (>500 mCrab) within a short exposure of ~100 ks with a 3-sigma confidence level. We show that this seemingly “modest” sensitivity can play a very significant role in addressing long pending questions, such as the contribution of relativistic jets to hard X-rays in black hole binaries and X-ray emission mechanism and geometry in X-ray pulsars.
机译:X射线极化仪在很大程度上是X射线天文学尚未成熟的领域的未开发领域。除了在1970年代进行了一些早期尝试外,在过去的40年中没有飞行过专用的X射线旋光仪。另一方面,X射线偏振测量的科学价值早已为人所熟知,并且近年来在开发灵敏的X射线偏振计中已经取得了重大的技术进步。但是,在不久的将来还没有批准的专用X射线极化实验,因此探索其他现有或计划中仪器的极化能力并检查它们是否可以提供重要的天体物理极化测量非常重要。在本文中,我们提供的实验结果表明,即将进行的印度天文学任务Astrosat上的CZTI仪器将能够提供100-300 keV能量范围内X射线极化的灵敏测量。对于明亮的X射线源(> 500 mCrab),CZTI将能够在3σ的置信度水平下短时间曝光约100 ks内,将大于40%的本征极化约束。我们表明,这种看似“适度”的灵敏度在解决长期未决的问题方面可以发挥非常重要的作用,例如相对论射流对黑洞双星中的硬X射线以及X射线脉冲星的X射线发射机制和几何形状的贡献。

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