带有孤立转向网格的厚像素CZT探测器

I. Jung, A. Garson, J. Perkins, H. Krawczynski, J. Matteson, R. Skelton, A. Burger, M. Groza
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引用次数: 3

摘要

我们探索了利用探测器阳极侧的转向栅格来提高0.5 cm厚碲化镉锌(CZT)探测器性能的可能性。转向网格通过增强小像素效应,提高了CZT探测器的能量分辨率;此外,它们可以通过将电子转向阳极像素来提高检测效率,否则电子会漂移到像素之间的区域。以前,转向网格的优势已经被转向网格和阳极像素之间的电流相关的额外噪声所损害。我们使用薄膜沉积技术,通过150nm厚的Al2O3隔离层将转向网格与CZT衬底隔离开来。虽然薄层不影响转向栅对探测器内部加权电位和电场的有利作用,但它抑制了转向栅和阳极像素之间的电流。在这篇文章中,我们展示了一个2times2times0.5 cm3 CZT探测器的第一个结果,该探测器具有8times8像素,我们在沉积隔离转向网格之前和之后进行了测试。转向网格将探测器的662 keV能量分辨率提高了1.3倍(从约2%提高到约1.5%),同时不降低检测效率。为了进一步了解探测器在像素之间区域的响应,我们使用校准的137Cs源测量了能谱。准直仪的测量结果可以用来提高我们对探测器在泛光照明下测量的能谱的理解
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Thick pixelated CZT detectors with isolated steering grids
We explore the possibility to improve the performance of 0.5 cm thick cadmium zinc telluride (CZT) detectors with the help of steering grids on the anode side of the detectors. Steering grids can improve the energy resolution of CZT detectors by enhancing the small pixel effect; furthermore, they can increase their detection efficiency by steering electrons to the anode pixels which otherwise would drift to the area between pixels. Previously, the benefit of steering grids had been compromised by additional noise associated with currents between the steering grids and the anode pixels. We use thin film deposition techniques to isolate the steering grid from the CZT substrate by a 150 nm thick layer of the isolator Al2O3. While the thin layer does not affect the beneficial effect of the steering grid on the weighting potentials and the electric field inside the detector, it suppresses the currents between the steering grid and the anode pixels. In this contribution, we present first results from a 2times2times0.5 cm3 CZT detector with 8times8 pixels that we tested before and after deposition of an isolated steering grid. The steering grid improves the 662 keV energy resolution of the detector by a factor of 1.3 (from about 2% to about 1.5%), while not reducing the detection efficiency. To gain further insights into the detector response in the region between pixels, we measured energy spectra with a collimated 137Cs source. The collimator measurements can be used to enhance our understanding of energy spectra measured under flood illumination of the detectors
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