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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >Small pixel CZT detector for hard X-ray spectroscopy
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Small pixel CZT detector for hard X-ray spectroscopy

机译:用于硬X射线光谱学的小像素CZT检测器

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摘要

A new small pixel cadmium zinc telluride (CZT) detector has been developed for hard X-ray spectroscopy. The X-ray performance of four detectors is presented and the detectors are analysed in terms of the energy resolution of each pixel. The detectors were made from CZT crystals grown by the travelling heater method (THM) bonded to a 20 x 20 application specific integrated circuit (ASIC) and data acquisition (DAQ.) system. The detectors had an array of 20 x 20 pixels on a 250 urn pitch, with each pixel gold-stud bonded to an energy resolving circuit in the ASIC. The DAQ system digitised the ASIC output with 14 bit resolution, performing offset corrections and data storage to disc in real time at up to 40,000 frames per second. The detector geometry and ASIC design was optimised for X-ray spectroscopy up to 150 keV and made use of the small pixel effect to preferentially measure the electron signal. A ~(241)Am source was used to measure the spectroscopic performance and uniformity of the detectors. The average energy resolution (FWHM at 59.54 keV) of each pixel ranged from 1.09 ±0.46 to 1.50 +0.57 keV across the four detectors. The detectors showed good spectral performance and uniform response over almost all pixels in the 20 x 20 array. A large area 80 x 80 pixel detector will be built that will utilise the scalable design of the ASIC and the large areas of monolithic spectroscopic grade THM grown CZT that are now available. The large area detector will have the same performance as that demonstrated here.
机译:已开发出一种用于硬X射线光谱学的新型小像素碲化镉锌(CZT)检测器。介绍了四个检测器的X射线性能,并根据每个像素的能量分辨率对检测器进行了分析。这些探测器由通过行进加热器方法(THM)生长的CZT晶体制成,并结合到20 x 20专用集成电路(ASIC)和数据采集(DAQ。)系统上。这些检测器有一个以250 um间距排列的20 x 20像素的阵列,每个像素的金钉均连接到ASIC中的能量解析电路。 DAQ系统以14位分辨率数字化ASIC输出,以每秒40,000帧的速度实时执行偏移校正和数据存储到磁盘。检测器的几何形状和ASIC设计针对高达150 keV的X射线光谱进行了优化,并利用小像素效应优先测量电子信号。使用〜(241)Am光源来测量探测器的光谱性能和均匀性。在四个探测器之间,每个像素的平均能量分辨率(FWHM为59.54 keV)在1.09±0.46到1.50 +0.57 keV之间。这些检测器在20 x 20阵列中的几乎所有像素上均显示出良好的光谱性能和一致的响应。将建造一个大面积的80 x 80像素检测器,该检测器将利用ASIC的可扩展设计以及现在可用的大面积单片光谱级THM生长的CZT。大面积检测器将具有与此处演示的性能相同的性能。

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    Science and Technology Facilities Council, Rutherford Appleton Laboratory, Harwell Science and Innovation Campus, Oxfordshire OX!! OQX, UK;

    Henry Moseley X-ray Imaging Facility, School of Materials, University of Manchester, UK;

    Redlen Technologies, Saanichton, British Columbia, Canada;

    Henry Moseley X-ray Imaging Facility, School of Materials, University of Manchester, UK;

    Redlen Technologies, Saanichton, British Columbia, Canada;

    Science and Technology Facilities Council, Rutherford Appleton Laboratory, Harwell Science and Innovation Campus, Oxfordshire OX!! OQX, UK;

    Science and Technology Facilities Council, Rutherford Appleton Laboratory, Harwell Science and Innovation Campus, Oxfordshire OX!! OQX, UK;

    Science and Technology Facilities Council, Rutherford Appleton Laboratory, Harwell Science and Innovation Campus, Oxfordshire OX!! OQX, UK;

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  • 原文格式 PDF
  • 正文语种 eng
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  • 关键词

    x-ray detector; energy resolving; cdznte; small pixel;

    机译:X射线探测器;能量分辨;cdznte;小像素;

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