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CdZnTe Position-sensitive Drift Detectors for Spectroscopy and Imaging of Gamma-ray Sources

机译:CdZnTe位置敏感漂移检测器,用于伽马射线源的光谱学和成像

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CdZnTe (CZT) is an attractive detecting medium for fabricating room-temperature operating gamma-ray detectors, which have a wide range of applications including nonproliferation, safeguards, national security, medical imaging and astrophysics. Virtual Frisch-grid (VFG) CZT detectors operate like classic gas ionization chambers with virtual Frisch-grids, in which the electron clouds generated by the incident photons drift in the external electric field towards the collecting electrode and generate output signals used for spectral analysis of the detected photons. The performance of CZT detectors depends on how efficiently the electron clouds can be transported from the interaction points to the collecting electrodes. The carriers generated in the ionization process could be trapped by crystal defects, which can be present at high concentrations in CZT. Recently we demonstrated a technique that allows us to correct the inhomogeneity in the response of CZT materials by employing high-granularity position-sensitive detector designs. The position-sensing technique allows for segmenting the detectors' volumes into large numbers of small "virtual" voxels and normalizing the responses generated by the incident photons in each of them. Arrays of such detectors can be integrated into compact handheld instruments for many practical applications, such as international safeguards, nonproliferation, arms control, and homeland security. In this work, we will report the results from testing small arrays of CZT position-sensitive drift detectors and discuss the effective integration of such arrays with low-noise electronics into a compact hand-held instrument for potential use in safeguards measurements by IAEA inspectors. The work to develop a compact radiation detection instrument for safeguards measurements was supported by the U. S. Department of Energy, Office of Nonproliferation and International Security, Office of Nuclear Safeguards & Security, Next Generation Safeguards Initiative's Safeguards Technology Development Team (NA-241), and the work to develop CZT detectors with thickness up to 50 mm was supported by the U. S. Department of Energy, Office of Defense Nuclear Nonproliferation Research & Development (NA-22).
机译:CdZnTe(CZT)是用于制造室温操作伽马射线探测器的一种有吸引力的检测介质,该探测器具有广泛的应用,包括防扩散,保障,国家安全,医学成像和天体物理学。虚拟Frisch-grid(VFG)CZT检测器的运行方式类似于带有虚拟Frisch-grid的经典气体电离室,其中入射光子产生的电子云在外部电场中向收集电极漂移,并产生用于光谱分析的输出信号。检测到的光子。 CZT检测器的性能取决于将电子云从相互作用点传输到收集电极的效率。电离过程中产生的载流子可能会被晶体缺陷捕获,晶体缺陷会以高浓度存在于CZT中。最近,我们展示了一种技术,该技术允许我们通过使用高粒度位置敏感探测器设计来纠正CZT材料响应中的不均匀性。位置感应技术可将检测器的体积分割成大量的小“虚拟”体素,并对入射光子在每个检测器中产生的响应进行归一化。这种检测器的阵列可以集成到紧凑的手持式仪器中,以用于许多实际应用,例如国际保障,防扩散,军备控制和国土安全。在这项工作中,我们将报告测试小型CZT位置敏感型漂移检测器阵列的结果,并讨论将此类阵列与低噪声电子设备有效集成到紧凑型手持式仪器中,以供国际原子能机构视察员用于保障措施测量的可能性。美国能源部,防扩散与国际安全办公室,核保障与安全办公室,下一代保障倡议的保障技术开发团队(NA-241)支持开发用于保障措施的紧凑型辐射检测仪器的工作。美国能源部国防部防核扩散研究与发展办公室(NA-22)支持开发厚度最大为50 mm的CZT探测器。

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