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Analysis of the data from Compton X-ray polarimeters which measure the azimuthal and polar scattering angles

机译:分析来自Compton X射线旋光仪的数据,该数据测量了方位角和极性散射角

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X-ray polarimetry has the potential to make key-contributions to our understanding of galactic compact objects like binary black hole systems and neutron stars, and extragalactic objects like active galactic nuclei, blazars, and Gamma-Ray Bursts. Furthermore, several particle astrophysics topics can be addressed including uniquely sensitive tests of Lorentz invariance. In the energy range from 10 keV to several MeV, Compton polarimeters achieve the best performance. In this paper we evaluate the benefit that comes from using the azimuthal and polar angles of the Compton scattered photons in the analysis, rather than using the azimuthal scattering angles alone. We study the case of an ideal Compton polarimeter and show that a Maximum Likelihood analysis which uses the two scattering angles lowers the Minimum Detectable Polarization (MDP) by ≈20% compared to a standard analysis based on the azimuthal scattering angles alone. The accuracies with which the polarization fraction and the polarization direction can be measured improve by a similar amount. We conclude by discussing potential applications of Maximum Likelihood analysis methods for various polarimeter experiments.
机译:X射线极化仪有可能为我们对星系致密物体(如双星黑洞系统和中子星)以及银河系外物体(如有源银河核,易碎石和伽马射线爆裂)的理解做出重要贡献。此外,可以解决几个粒子天体物理学主题,包括洛伦兹不变性的唯一敏感测试。在10 keV到几个MeV的能量范围内,康普顿旋光仪可实现最佳性能。在本文中,我们评估了在分析中使用康普顿散射光子的方位角和极角而不是仅使用方位角散射角所带来的好处。我们研究了理想康普顿旋光仪的情况,结果表明,与仅基于方位角散射角的标准分析相比,使用两个散射角的最大似然分析将最小可检测偏振(MDP)降低了约20%。可以测量偏振分数和偏振方向的精度提高了相似的数量。我们通过讨论最大似然分析方法在各种旋光仪实验中的潜在应用来得出结论。

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