...
首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >Energy-loss correction in charge sharing events for improved performance of pixellated compound semiconductors
【24h】

Energy-loss correction in charge sharing events for improved performance of pixellated compound semiconductors

机译:电荷共享事件中的能量损耗校正,以改善像素化化合物半导体的性能

获取原文
获取原文并翻译 | 示例

摘要

The sharing of charge between multiple pixels can significantly degrade the energy resolution of small pixelated compound semiconductor detectors. This paper describes an energy calibration and reconstruction technique to correct for absorbed energy that is split over two neighbouring pixels, defined as bipixel events. Results were obtained with a 1 mm thick CdTe detector with 250 mu m pixel pitch and an inter-pixel spacing of 50 mu m, using the STFC HEXITEC ASIC.The proportion of charge sharing events was found to be 54% for photons at 59.5 keV when applying a noise threshold of 3 keV. Across the energy range investigated, bipixels were the predominant shared event type and the absolute fraction of shared events was found to be dependent on the noise threshold used.The reconstruction technique described reduces the degradation of energy resolution due to charge sharing in bipixel events compared to simple charge sharing summing techniques. This improved counting efficiency compared to using only isolated events and improved energy resolution compared to pixel addition techniques. When only isolated pixels were included, a FWHM energy resolution of 1.42 keV at 140.5 keV was achievable; inclusion of bipixel events using pixel addition results in an energy resolution of 3.33 keV whereas the reconstruction technique described here results in an energy resolution of 2.14 keV. When bipixel events are combined with single pixel events, the number of counts within the 140.5 keV photopeak of Tc-99m increased by over 100%.
机译:多个像素之间的电荷共享会显着降低小型像素化化合物半导体探测器的能量分辨率。本文介绍了一种能量校准和重建技术,以校正吸收的能量,该能量被划分为两个相邻像素(定义为双像素事件)。使用STFC HEXITEC ASIC通过1mm厚的CdTe检测器获得的结果,该检测器的像素间距为250μm,像素间间距为50μm,对于59.5keV的光子,电荷共享事件的比例为54%当施加3 keV的噪声阈值时。在所研究的能量范围内,双像素是主要的共享事件类型,发现共享事件的绝对比例取决于所使用的噪声阈值。与之相比,所描述的重建技术减少了由于双像素事件中的电荷共享而导致的能量分辨率下降。简单的电荷共享求和技术。与仅使用孤立事件相比,此方法提高了计数效率,与像素相加技术相比,其能量分辨率得到了提高。当仅包括孤立像素时,在140.5 keV时可获得1.42 keV的FWHM能量分辨率;使用像素加法包含双像素事件会导致3.33 keV的能量分辨率,而此处描述的重建技术会导致2.14 keV的能量分辨率。当将双像素事件与单像素事件组合时,Tc-99m的140.5 keV光电峰内的计数增加了100%以上。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号