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Large-area sub-millimeter resolution CdZnTe strip detector for astronomy

机译:用于天文学的大面积亚毫米分辨率CdZnTe条形探测器

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摘要

We report the first performance measurements of a sub-millimeter CdZnTe strip detector developed as a prototype for space-borne astronomical instruments. Strip detector arrays can be used to provide two-dimensional position resolution with fewer electronic channels than pixellated arrays. Arrays of this type and other candidate technologies are under investigation for the position-sensitive backplane detector for a coded-aperture telescope operating in the range of 30 - 300 keV. The prototype is a 1.4 mm thick, 64 multiplied by 64 stripe CdZnTe array of 0.375 mm pitch in both dimensions, approximately one square inch of sensitive area. Pulse height spectra in both single and orthogonal stripe coincidence mode were recorded at several energies. The results are compared to slab- and pixel-geometry detector spectra. The room-temperature energy resolution is less than 10 keV (FWHM) for 122 keV photons with a peak-to-valley ratio greater than 5:1. The response to photons with energies up to 662 keV appears to be considerably improved relative to that of previously reported slab and pixel detectors. We also show that strip detectors can yield spatial and energy resolutions similar to those of pixellated arrays with the same dimensions. Electrostatic effects on the pulse heights, read-out circuit complexity, and issues related to design of space borne instruments are also discussed.
机译:我们报告了作为空间传播天文仪器的原型开发的亚毫米Cdznte带探测器的第一个性能测量。条带探测器阵列可用于提供具有比像素阵列更少的电子通道的二维位置分辨率。对于定位孔径望远镜的位置敏感背板检测器,在30-300keV的范围内进行的定位敏感背板检测器正在调查这种类型和其他候选技术的阵列。原型为1.4毫米厚,64倍乘以64条条纹Cdznte阵列,两个尺寸为0.375毫米,大约一平方英寸的敏感区域。单个和正交条带符合模式中的脉冲高度光谱记录在几个能量上。将结果与平板和像素几何检测器谱进行比较。室温能量分辨率小于10keV(FWHM),对于122keV光子,峰 - 谷比大于5:1。相对于先前报道的板坯和像素检测器的响应具有高达662keV的光子的响应似乎得到了显着改善。我们还表明,条带探测器可以产生类似于具有相同尺寸的像素化阵列类似的空间和能量分辨率。还讨论了对脉冲高度,读出电路复杂性的静电影响以及与空间型仪器设计有关的问题。

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