论文标题
开发宽带混合X射线成像仪的检测器仿真框架
Development of the detector simulation framework for the Wideband Hybrid X-ray Imager onboard FORCE
论文作者
论文摘要
力是一种基于日本的空间天文学任务,用于1--80 KEV的能量范围内的X射线成像光谱。宽带混合X射线成像仪(WHXI)是主要的焦平面检测器,它将使用由硅和三尿酸钙(CDTE)组成的混合半导体成像堆栈。硅成像仪将是某种类型的硅启用器(SOI)像素传感器,称为X射线像素(XRPIX)系列。由于传感器的像素尺寸很小(30--36 $ $ m)和一个较厚的敏感区域(300---500 $μ$ m),因此了解探测器响应并不小,对于优化相机设计并评估科学能力而言很重要。 我们已经开发了一个框架来模拟具有半导体传感器的天体源的观察。通过将我们的仿真结果与使用XRPIX 6H传感器进行比较,我们的仿真框架进行了测试和验证。模拟器很好地通过传感器的合理物理参数(包括电场结构,对载体扩散的库仑排斥效应)以及降级区域的排列进行了合理的物理参数。该框架还适用于将来的XRPIX更新,包括将是WHXI的一部分以及各种类型的半导体传感器。
FORCE is a Japan-US space-based astronomy mission for an X-ray imaging spectroscopy in an energy range of 1--80 keV. The Wideband Hybrid X-ray Imager (WHXI), which is the main focal plane detector, will use a hybrid semiconductor imager stack composed of silicon and cadmium telluride (CdTe). The silicon imager will be a certain type of the silicon-on-insulator (SOI) pixel sensor, named the X-ray pixel (XRPIX) series. Since the sensor has a small pixel size (30--36 $μ$m) and a thick sensitive region (300--500 $μ$m), understanding the detector response is not trivial and is important in order to optimize the camera design and to evaluate the scientific capabilities. We have developed a framework to simulate observations of celestial sources with semiconductor sensors. Our simulation framework was tested and validated by comparing our simulation results to laboratory measurements using the XRPIX 6H sensor. The simulator well reproduced the measurement results with reasonable physical parameters of the sensor including an electric field structure, a Coulomb repulsion effect on the carrier diffusion, and arrangement of the degraded regions. This framework is also applicable to future XRPIX updates including the one which will be part of the WHXI, as well as various types of semiconductor sensors.