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Ray tracing simulations for the Wide-field X-ray Telescope of the Einstein Probe mission based on Geant4 and XRTG4

机译:基于Geant4和XRTG4的爱因斯坦探测任务的宽视野X射线望远镜的射线追踪模拟

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Einstein Probe (EP) is a proposed small scientific satellite dedicated to time-domain astrophysics working in the soft X-ray band. It will discover transients and monitor variable objects in 0.5-4 keV, for which it will employ a very large instantaneous field-of-view (60° × 60°), along with moderate spatial resolution (FWHM ~5 arcmin). Its wide-field imaging capability will be achieved by using established technology in novel lobster-eye optics. In this paper, we present Monte-Carlo simulations for the focusing capabilities of EP's Wide-field X-ray Telescope (WXT). The simulations are performed using Geant4 with an X-ray tracer which was developed by cosine to trace X-rays. Our work is the first step toward building a comprehensive model with which the design of the X-ray optics and the ultimate sensitivity of the instrument can be optimized by simulating the X-ray tracing and radiation environment of the system, including the focal plane detector and the shielding at the same time.
机译:爱因斯坦探针(EP)是一种拟议的小型科学卫星,致力于在软X射线波段中进行时域天体物理学研究。它会发现瞬变并监视0.5-4 keV的可变对象,为此它将采用非常大的瞬时视场(60°×60°),并具有适度的空间分辨率(FWHM〜5 arcmin)。它的宽视场成像能力将通过在新颖的龙虾眼光学系统中使用成熟的技术来实现。在本文中,我们介绍了蒙特卡洛模拟,以用于EP的广角X射线望远镜(WXT)的聚焦能力。使用带有X射线示踪剂的Geant4进行模拟,该X射线示踪剂是由余弦产生的以跟踪X射线。我们的工作是建立综合模型的第一步,通过模拟系统的X射线跟踪和辐射环境(包括焦平面检测器),可以优化X射线光学器件的设计和仪器的最终灵敏度。并同时屏蔽。

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