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Development of cosmic X-ray polarimeter

机译:宇宙X射线旋光仪的研制

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We present a performance study of a cosmic X-ray polarimeter which is based on the photoelectric effect in gas, and sensitive to a few to 30 keV range. In our polarimeter, the key device would be the 50 μm pitch Gas Electron Multiplier (GEM). We have evaluated the modulation factor using highly polarized X-ray, provided by a synchrotron accelerator. In the analysis, we selected events by the eccentricity of the charge cloud of the photoelectron track. As a result, we obtained the relationship between the selection criteria for the eccentricity and the modulation factors; for example, when we selected the events which have their eccentricity of > 0.95, the polarimeter exhibited with the modulation factor of 0.32. In addition, we estimated the Minimum Detectable Polarization degree (MDP) of Crab Nebula with our polarimeter and found 10 ksec observation is enough to detect the polarization, if we adopt suitable X-ray mirrors.
机译:我们介绍了基于气体中的光电效应并且对几到30 keV范围敏感的宇宙X射线旋光仪的性能研究。在我们的旋光仪中,关键设备将是间距为50μm的气体电子倍增器(GEM)。我们使用同步加速器提供的高偏振X射线评估了调制因子。在分析中,我们通过光电子轨道电荷云的偏心率选择了事件。结果,我们获得了偏心率的选择标准与调制因子之间的关系。例如,当我们选择偏心率大于0.95的事件时,旋光仪的调制系数为0.32。此外,我们使用偏光计估计了蟹状星云的最小可检测偏振度(MDP),如果采用合适的X射线镜,则10 ksec的观测值足以检测偏振。

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