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A high-resolution, multi-parameter, β-γ coincidence, μ-γ anticoincidence system for radioxenon measurement

机译:用于放射性氙测量的高分辨率,多参数,β-γ重合,μ-γ反符合系统

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A higtvresolution β-γ coincidence measurement system has been developed by combining a high-purity broad energy germanium and a silicon surface barrier detector. The system is intended for calibration of reference spikes and re-measurement of CTBT samples, by detection of coincident p-y or conversion electron and X-ray radiation of the four radioxenon isotopes ~(131m)Xe, ~(131m)Xe, ~(133)Xe and ~(135)Xe. The use of a high-resolution, list-mode, multi-parameter data acquisition system allows off-line setup and optimization of the (anti)coincidence. A ~(166m)Ho p-y source has been produced and validated for energy calibration and system check. The β-γ coincidence has been further enhanced by a cosmic muon veto based on six plastic scintillation detectors. The μ-γ anticoincidence has been implemented using a 50 ns resolution real-time clock for time spectroscopy. This method has been verified by running conventional TAC-ADC (combined time-amplitude and analog-digital converter) based time spectroscopy in parallel. The whole measurement system has been characterized, by measuring various radioxenon spikes and backgrounds with and without (anti)coincidence. Peak efficiencies and minimum detectable activities (MDA) for the main radioxenon isotopes have been determined. Application of μ-γ anticoincidence reduced the MDA by about a factor of two for all four radioxenon isotopes. Complementary adoption of P-y coincidence further reduced the MDA for the metastable isotopes by more than an order of magnitude. The MDA for ~(135)Xe reaches about 6 mBq after 1 day of measurement. For ~(131m)Xe, ~(133)Xe and ~(131m)Xe a MDA of about 2 mBq is obtained after one week measurement.
机译:通过组合高纯度宽能锗和硅表面势垒检测器,开发了一种高分辨率β-γ符合测量系统。该系统旨在通过检测四个放射性氙同位素〜(131m)Xe,〜(131m)Xe,〜(133)的同时py或转换电子和X射线辐射,来校准参考尖峰和重新测量CTBT样品。 Xe和〜(135)Xe。高分辨率,列表模式,多参数数据采集系统的使用允许离线设置和(反)巧合优化。已经产生了一个约(166m)Ho p-y源,并已进行了能量校准和系统检查的验证。基于六个塑料闪烁探测器的宇宙μ否决权进一步增强了β-γ的重合性。使用时间分辨率为50 ns的实时时钟实现了μ-γ反符合。通过并行运行基于常规TAC-ADC(组合的时间-振幅和模数转换器)的时间光谱,已经验证了该方法。整个测量系统的特征是通过测量各种放射性氙的尖峰和背景(有和没有(反)一致)。已经确定了主要放射性氙同位素的峰值效率和最低可检测活性(MDA)。对于所有四个放射性氙同位素,应用μ-γ反巧合可使MDA降低约两倍。对P-y巧合的补充采用进一步将亚稳同位素的MDA降低了一个数量级以上。测量1天后,〜(135)Xe的MDA达到约6 mBq。对于〜(131m)Xe,〜(133)Xe和〜(131m)Xe,经过一周的测量,其MDA约为2 mBq。

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