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Efficiency Measurement on 6.0 cm~3 3-D CdZnTe Detectors

机译:6.0 cm〜3 3-D Cdznte探测器的效率测量

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This work investigate the full energy and total efficiencies of large volume CdZnTe detectors. The efficiencies of three 20 mm × 20 mm × 15 mm pixelated CdZnTe detectors were measured using the H3Dv2 Application Specific Integrated Circuit (ASIC) readout system developed by Brookhaven National Laboratory with un-collimated ~(241)Am, ~(137)Cs, and ~(60)Co sources. One detector was made by eV-Products while the other two were manufactured by Redlen Technologies. Geant4 simulation results are used as the benchmark. The relative efficiency, defined as the ratio between the measured efficiency and the simulated efficiency, is an indicator of the active volume in the detector. The total relative efficiency is close to 100% for all three sources. However, there are deficits on full energy efficiency at higher energies, especially for ~(60)Co. This loss of full energy efficiency could be due to distorted electric field near the detector side surfaces. Our measurements showed that Redlen detectors have similar efficiency with that of eV-Products detector. The active volume of each detector is more than 90%.
机译:这项工作研究了大容量Cdznte探测器的全能量和总效率。使用Brookhaven国家实验室开发的H3DV2应用特定集成电路(ASIC)读出系统,使用Un-Constrimated〜(241)AM,〜(137)Cs,〜(137)Cs,和〜(60)CO来源。通过EV-Products制造一个探测器,而另外两个由Redlen Technologies制造。 Geant4仿真结果用作基准。定义为测量效率与模拟效率之间的比率的相对效率是检测器中的有效体积的指示。对于所有三种来源,相对效率的总相对效率接近100%。然而,在较高的能量下有完全能效存在缺陷,特别是对于〜(60)CO。这种全能效率的损失可能是由于探测器侧表面附近的电场扭曲。我们的测量结果表明,Redlen检测器具有类似的效率,具有EV-Products检测器的效率。每个探测器的活性体积超过90%。

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