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Impact of geometry on light collection efficiency of scintillation detectors for cryogenic rare event searches

机译:几何形状对闪烁探测器低温罕见事件搜索的光收集效率的影响

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Simulations of photon propagation in scintillation detectors were performed with the aim to find the optimal scintillator geometry, surface treatment, and shape of external reflector in order to achieve maximum light collection efficiency for detector configurations that avoid direct optical coupling, a situation that is commonly found in cryogenic scintillating bolometers in experimental searches for double beta decay and dark matter. To evaluate the light collection efficiency of various geometrical configurations we used the ZEMAX ray-tracing software. It was found that scintillators in the shape of a triangular prism with an external mirror shaped as truncated cone gives the highest light collection efficiency. The results of the simulations were confirmed by carrying out measurements of the light collection efficiencies of CaWO_4 crystal scintillators. A comparison of simulated and measured values of light output shows good agreement.
机译:为了找到最佳的闪烁体几何形状,表面处理和外部反射器的形状,进行了闪烁检测器中光子传播的模拟,以便为避免直接光耦合的检测器配置获得最大的集光效率,这种情况通常被发现在低温闪烁辐射热计中进行双β衰变和暗物质的实验研究。为了评估各种几何配置的光收集效率,我们使用了ZEMAX光线追踪软件。已经发现,三角形棱镜的闪烁体具有截顶圆锥形的外部镜具有最高的光收集效率。通过对CaWO_4晶体闪烁体的集光效率进行测量,可以确认仿真结果。光输出的模拟值和测量值的比较显示出很好的一致性。

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