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Drift parameters optimization of a TPC polarimeter: a simulation study

机译:TPC旋光仪的漂移参数优化:仿真研究

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摘要

Time Projection Chamber (TPC) based X-ray polarimeters using Gas Electron Multiplier (GEM) are currently being developed to make sensitive measurement of polarization in 2-10 keV energy range. The emission direction of the photoelectron ejected via photoelectric effect carries the information of the polarization of the incident X-ray photon. Performance of a gas based polarimeter is affected by the operating drift parameters such as gas pressure, drift field and drift-gap. We present simulation studies carried out in order to understand the effect of these operating parameters on the modulation factor of a TPC polarimeter. Models of Garfield are used to study photoelectron interaction in gas and drift of electron cloud towards GEM. Our study is aimed at achieving higher modulation factors by optimizing drift parameters. Study has shown that Ne/DME (50/50) at lower pressure and drift field can lead to desired performance of a TPC polarimeter.
机译:目前正在开发使用气体电子倍增器(GEM)的基于时间投影室(TPC)的X射线旋光仪,以敏感地测量2-10 keV能量范围内的偏振。通过光电效应射出的光电子的发射方向带有入射的X射线光子的偏振信息。基于气体的旋光仪的性能受工作漂移参数(例如气压,漂移场和漂移间隙)的影响。我们目前进行的仿真研究是为了了解这些操作参数对TPC旋光仪的调制因子的影响。使用加菲猫模型研究气体中的光电子相互作用以及电子云向GEM的漂移。我们的研究旨在通过优化漂移参数来实现更高的调制因子。研究表明,Ne / DME(50/50)在较低的压力和漂移场下可以达到TPC旋光仪的理想性能。

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