论文标题

使用actosat-czt成像器的镉醇酸酯检测器对离轴偏振的实验验证

Experimental verification of off-axis polarimetry with Cadmium Zinc Telluride detectors of AstroSat-CZT Imager

论文作者

Vaishnava, C. S., Mithun, N. P. S., Vadawale, Santosh V., Aarthy, Esakkiappan, Patel, Arpit R., Adalja, Hiteshkumar L., Tiwari, Neeraj Kumar, Ladiya, Tinkal, Navale, Nilam, Chattopadhyay, Tanmoy, Rao, A. R., Bhalerao, Varun, Bhattacharya, Dipankar

论文摘要

船上Astrosat上的镉悉尿酸成像仪(CZTI)由大量的像素化的CZT检测器组成,能够测量入射硬X射线的极化。在发射之前,对CZTI的极化测量能力进行了实验确认。 CZTI在100-380 keV的能量范围内对螃蟹星云和脉冲星的X射线极化产生了诱人的结果。 CZTI还有助于测量几个伽马射线爆发(GRB)的迅速发射极化。但是,诸如GRB之类的非轴源的极化测量具有挑战性。实验校准对过轴源的CZTI敏感性以增强测量值的敏感性至关重要。在这种情况下,我们报告了通过使用CZTI和实验设置的CZTI和广泛GEANT4模拟的CZT检测器进行的对照实验进行的像素化CZT检测器的离轴偏振能力的验证。我们目前的结果表明,CZT探测器可用于测量左右角度的偏振,直至约60度。但是,在45-60度之间的发病角度,可能需要考虑一些系统效应,这些效应需要考虑到解释测得的极化分数。

The Cadmium Zinc Telluride Imager (CZTI) onboard AstroSat consists of an array of a large number of pixellated CZT detectors capable of measuring the polarization of incident hard X-rays. The polarization measurement capability of CZTI for on-axis sources was experimentally confirmed before the launch. CZTI has yielded tantalizing results on the X-ray polarization of the Crab nebula and pulsar in the energy range of 100 - 380 keV. CZTI has also contributed to the measurement of prompt emission polarization for several Gamma-Ray Bursts (GRBs). However, polarization measurements of off-axis sources like GRBs are challenging. It is vital to experimentally calibrate the CZTI sensitivity to off-axis sources to enhance the credence of the measurements. In this context, we report the verification of the off-axis polarimetric capability of pixellated CZT detectors through the controlled experiments carried out with a CZT detector similar to that used in CZTI and extensive Geant4 simulations of the experimental set-up. Our current results show that the CZT detectors can be used to measure the polarization of bright GRBs up to off-axis angles of ~60 degrees. However, at incidence angles between 45-60 degrees, there might be some systematic effects which needs to be taken into account while interpreting the measured polarisation fraction.

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