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采用室温 CZT 探测器可提高 X 射线光谱性能。

Improved x-ray spectroscopy with room temperature CZT detectors.

机构信息

Imaging Physics Laboratory, Department of Physics and Astronomy, Louisiana State University, Baton Rouge, LA 70803, USA.

出版信息

Phys Med Biol. 2011 Sep 7;56(17):5735-51. doi: 10.1088/0031-9155/56/17/017. Epub 2011 Aug 12.

Abstract

Compact, room temperature x-ray spectroscopy detectors are of interest in many areas including diagnostic x-ray imaging, radiation protection and dosimetry. Room temperature cadmium zinc telluride (CZT) semiconductor detectors are promising candidates for these applications. One of the major problems for CZT detectors is low-energy tailing of the energy spectrum due to hole trapping. Spectral post-correction methods to correct the tailing effect do not work well for a number of reasons; thus it is advisable to eliminate the hole trapping effect in CZT using physical methods rather than correcting an already deteriorated energy spectrum. One method is using a CZT detector with an electrode configuration which modifies the electric field in the CZT volume to decrease low-energy tailing. Another method is to irradiate the CZT surface at a tilted angle, which modifies depth of interaction to decrease low-energy tailing. Neither method alone, however, eliminates the tailing effect. In this work, we have investigated the combination of modified electric field and tilted angle irradiation in a single detector to further decrease spectral tailing. A planar CZT detector with 10 × 10 × 3 mm³ size and CZT detector with 5 × 5 × 5 mm³ size and cap-shaped electrode were used in this study. The cap-shaped electrode (referred to as CAPture technology) modifies the electric field distribution in the CZT volume and decreases the spectral tailing effect. The detectors were investigated at 90° (normal) and 30° (tilted angle) irradiation modes. Two isotope sources with 59.6 and 122 keV photon energies were used for gamma-ray spectroscopy experiments. X-ray spectroscopy was performed using collimated beams at 60, 80 and 120 kVp tube voltages, in both normal and tilted angle irradiation. Measured x-ray spectra were corrected for K x-ray escape fractions that were calculated using Monte Carlo methods. The x-ray spectra measured with tilted angle CAPture detector at 60, 80 and 120 kVp tube voltages were compared to corresponding theoretical spectra. The low-energy tailing was nearly completely eliminated from 59.6 and 122 keV isotope spectra, and 60, 80 and 120 kVp x-ray spectra, when CAPture detector was used with 30° tilted angle irradiation. It is concluded that using a CZT detector with modified electric field in tilted angle configuration resolves problem of the tailing effect in CZT detectors, opening promising possibilities in gamma-ray and x-ray spectroscopy applications.

摘要

紧凑型、室温 X 射线能谱探测器在许多领域都有应用,包括诊断 X 射线成像、辐射防护和剂量测定。室温碲锌镉(CZT)半导体探测器是这些应用的有前途的候选者。CZT 探测器的一个主要问题是由于空穴俘获导致能谱的低能拖尾。光谱后校正方法由于多种原因无法很好地校正拖尾效应;因此,建议使用物理方法消除 CZT 中的空穴俘获效应,而不是校正已经恶化的能谱。一种方法是使用具有修改 CZT 体积内电场的电极配置的 CZT 探测器,以减小低能拖尾。另一种方法是倾斜照射 CZT 表面,从而改变相互作用深度以减小低能拖尾。然而,单独使用这两种方法都不能消除拖尾效应。在这项工作中,我们研究了在单个探测器中结合修改后的电场和倾斜角照射,以进一步减小光谱拖尾。这项研究使用了尺寸为 10×10×3mm³的平面 CZT 探测器和尺寸为 5×5×5mm³的 CZT 探测器和帽形电极。帽形电极(称为 CAPture 技术)修改了 CZT 体积内的电场分布,并减小了光谱拖尾效应。探测器在 90°(正常)和 30°(倾斜角)照射模式下进行了研究。使用具有 59.6 和 122keV 光子能量的两种同位素源进行了伽马射线能谱实验。使用准直束在 60、80 和 120kVp 管电压下进行了 X 射线能谱实验,在正常和倾斜角照射下都进行了实验。使用蒙特卡罗方法计算 K 射线逃逸分数对 X 射线能谱进行了校正。使用倾斜角 CAPture 探测器测量的 X 射线能谱在 60、80 和 120kVp 管电压下与相应的理论能谱进行了比较。当使用 30°倾斜角照射的 CAPture 探测器时,59.6 和 122keV 同位素能谱以及 60、80 和 120kVp X 射线能谱的低能拖尾几乎完全消除。结论是,使用具有倾斜角配置的修改后的电场的 CZT 探测器解决了 CZT 探测器拖尾效应的问题,为伽马射线和 X 射线能谱应用开辟了有希望的可能性。

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