Zhang Xinghua, Zhao Baosheng, Zhao Feifei, Liu Yong'an, Miao Zhenhua, Zhu Xiangping, Yan Qiurong
State Key Laboratory of Transient Optics and Photonics, Xi'an Institute of Optics and Precision Mechanics, Chinese Academy of Sciences, 710119 Xi'an, China.
Rev Sci Instrum. 2009 Mar;80(3):033101. doi: 10.1063/1.3090891.
The structure and work principle of an ultraviolet photon counting imaging detector based on wedge and strip anode with induction readout mode are introduced. Two methods of estimating the charge footprint size are presented. One way is theoretical calculation and simulation. The physical course of electrons is simulated from the microchannel plate output side to the readout anode. The calculated results show that the final charge footprint size is sensitive to the thickness of ceramic and not sensitive to the charge footprint size on the Ge layer. The other way is experimental image estimation. The final charge footprint size can be estimated according to the position where the light line of resolution board image begins to bend. Both methods show that the charge footprint size is sensitive to the ceramic substrate. The two methods are simple and effective for estimation of charge footprint size of photon counting imaging detector with induction readout.
介绍了一种基于楔形条形阳极感应读出模式的紫外光子计数成像探测器的结构和工作原理。提出了两种估计电荷足迹尺寸的方法。一种方法是理论计算和模拟。从微通道板输出侧到读出阳极模拟电子的物理过程。计算结果表明,最终电荷足迹尺寸对陶瓷厚度敏感,而对锗层上的电荷足迹尺寸不敏感。另一种方法是实验图像估计。可以根据分辨率板图像的光线开始弯曲的位置来估计最终电荷足迹尺寸。两种方法都表明电荷足迹尺寸对陶瓷基板敏感。这两种方法对于估计具有感应读出的光子计数成像探测器的电荷足迹尺寸简单有效。