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The Polarimetric Performance of the Compton Spectrometer and Imager (COSI)

机译:康普顿光谱仪和成像仪(Cosi)的偏振性能

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The Compton Spectrometer and Imager (COSI) is a compact Compton telescope which is inherently sensitive to gamma-ray polarization in the energy range of 0.2-2.0 MeV. A long duration gamma-ray burst, GRB 1G0530A, was detected by COSI during its 2016 COSI's balloon flight. The polarization of GRB 160530A was constrained based on the distribution of azimuthal scattering angles from each incident photon inside COSI's germanium detector array. In order to determine COSI's polarization response and to identify systematic deviations from an ideal sinusoidal modulation, the polarization performance of COSI was validated in the laboratory prior to the 2016. A partially polarized beam was created by scattered emission from a radioactive source off a scinlillator. In addition, measurements and simulations of unpolarized radioactive sources were compared to validate our capability of capturing the instrument systematics in the simulations. No statistically significant differences exist between the measured and simulated modulations and polarization angle, where the upper bound on the systematic error is 3%-4%. In this talk. I will present the measurements used to validate COSI's polarimetric performance. Furthermore, I will use these results to estimate the minimum detectable polarization levels for current and future COSI missions.
机译:康普顿光谱仪和成像仪(Cosi)是一个紧凑的康普顿望远镜,其在0.2-2.0 mev的能量范围内固有地对伽马射线极化敏感。在2016宇宙的气球飞行期间,Cosi检测到长时间伽马射线爆发GRB 1G0530A。 GRB 160530A的偏振是基于来自Cosi的锗检测器阵列内的每个入射光膜的方位角散射角度的分布。为了确定Cosi的极化响应并识别与理想正弦调制的系统偏差,在2016年之前在实验室中验证了Cosi的偏振性能。通过从Scinlillator的放射性源的散射发射产生部分偏振的光束。此外,比较了未经旋光放射源的测量和模拟,以验证我们在模拟中捕获仪器系统的能力。在测量和模拟的调制和偏振角之间没有存在统计学上的显着差异,其中系统误差上限为3%-4%。在这个谈话中。我将介绍用于验证Cosi的Polariemetric性能的测量。此外,我将使用这些结果来估计当前和未来Cosi任务的最小可检测偏振级别。

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