论文标题

使用Astrosat CZT-Imager的5年伽马射线爆发样本的硬X射线极化目录

Hard X-ray polarization catalog for a 5-year sample of Gamma-Ray Bursts using AstroSat CZT-Imager

论文作者

Chattopadhyay, Tanmoy, Gupta, Soumya, Iyyani, Shabnam, Saraogi, Divita, Sharma, Vidushi, Tsvetkova, Anastasia, Ratheesh, Ajay, Gupta, Rahul, Mithun, N. P. S., Vaishnava, C. S., Prasad, Vipul, Aarthy, E., Kumar, Abhay, Rao, A. R., Vadawale, Santosh, Bhalerao, Varun, Bhattacharya, Dipankar, Vibhute, Ajay, Frederiks, Dmitry

论文摘要

自2015年推出以来,Astrosat上的镉醇酸酯成像仪(CZTI)一直定期检测到伽马射线爆发(GRB)。其对100 kev高于100 kev的极化测量的敏感性使CZTI允许CZTI尝试GRBS的Spectro-Polarimetric-Polarimetric-Polarimetric polarimetric Lettrimetrictric研究。在这里,我们介绍了CZTI在运营的头五年进行的GRB极化测量的第一个目录。这列出了在100-600 keV的能量范围内20 GRB的迅速排放的时间整合极化测量。样品包括在0-60度和120-180度的角度范围内检测到的明亮GRB,其中该仪器具有有用的极化灵敏度,并且不容易系统地系统。我们在分析中实施了一些新的修改,以增强仪器的偏振灵敏度。发现样品中的大多数GRB在整个爆发的持续时间内具有较小的 /无效的极化,而五个GRB的小部分表现出高极化。可以推测跨爆发的低极化是由于爆发本质上是弱极化的,或者是由于爆发内的极化角度变化,即使它高度极化。与极性测量值相比,CZTI检测到了较大极化的情况。这可能是CZTI观测的较高能量窗口的结果,这与极性相反,导致较小的爆发持续时间采样,从而探测了极化特性的时间变化较小的排放。

Cadmium Zinc Telluride Imager (CZTI) aboard AstroSat has been regularly detecting Gamma-Ray Bursts (GRBs) since its launch in 2015. Its sensitivity to polarization measurements at energies above 100 keV allows CZTI to attempt spectro-polarimetric studies of GRBs. Here, we present the first catalog of GRB polarization measurements made by CZTI during its first five years of operation. This presents the time integrated polarization measurements of the prompt emission of 20 GRBs in the energy range 100-600 keV. The sample includes the bright GRBs which were detected within an angle range of 0-60 degree and 120-180 degree where the instrument has useful polarization sensitivity and is less prone to systematics. We implement a few new modifications in the analysis to enhance polarimetric sensitivity of the instrument. Majority of the GRBs in the sample are found to possess less / null polarization across the total bursts' duration in contrast to a small fraction of five GRBs exhibiting high polarization. The low polarization across the bursts can be speculated to be either due to the burst being intrinsically weakly polarized or due to varying polarization angle within the burst even when it is highly polarized. In comparison to POLAR measurements, CZTI has detected a larger number of cases with high polarization. This may be a consequence of the higher energy window of CZTI observations which results in the sampling of smaller duration of burst emissions in contrast to POLAR, thereby, probing emissions of less temporal variations of polarization properties.

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