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Application of the Monte-Carlo refractive index matching (MCRIM) technique to the determination of the absolute light yield of a calcium molybdate scintillator

机译:蒙特卡洛折射率匹配(MCRIM)技术在确定钼酸钙闪烁体的绝对光产率中的应用

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摘要

The use of 40Ca100MoO in experimental searches for neutrinoless double beta decay (0νDBD) relies on knowledge of fundamental scintillation properties of the material. In this work we determine the absolute light yield of calcium molybdate using Monte-Carlo refractive index matching technique (MCRIM). The MCRIM technique is a combination of experiment and simulations that allows the absolute light yield of scintillators to be determined by taking into account effects of refraction, scattering and absorption in the material. The light collection efficiency of the scintillator-detector assembly was simulated using the ZEMAX ray-tracing software. By tuning the optical parameters of the scintillation crystal, a model was derived that gives good agreement with the experimental results. It is shown that the light collection efficiency of scintillators increases with transmittance and scattering due to an enhanced probability for photons to escape the crystal volume. Using MCRIM, the absolute light yield for the 40Ca100MoO4 scintillator was found to be 7.5±1.2 ph/keV at room temperature. Comparative measurements using a CaWO4 scintillator as a reference show good agreement with this result. In that way, the study demonstrated the potential of the MCRIM technique as a tool for quantitative characterization of scintillation materials. © 2013 IOP Publishing Ltd and Sissa Medialab srl.
机译:在无中微子双β衰变(0νDBD)实验搜索中使用40Ca100MoO依赖于对材料基本闪烁特性的了解。在这项工作中,我们使用蒙特卡洛折射率匹配技术(MCRIM)确定了钼酸钙的绝对光产率。 MCRIM技术是实验和模拟的结合,可以通过考虑材料中折射,散射和吸收的影响来确定闪烁体的绝对光输出。使用ZEMAX光线跟踪软件模拟了闪烁体-探测器组件的光收集效率。通过调整闪烁晶体的光学参数,得出了与实验结果吻合良好的模型。结果表明,由于光子逸出晶体体积的可能性增加,闪烁体的集光效率随着透射率和散射的增加而增加。使用MCRIM,发现40Ca100MoO4闪烁体的绝对光产率在室温下为7.5±1.2 ph / keV。使用CaWO4闪烁体作为参考的比较测量结果与该结果吻合良好。通过这种方式,研究证明了MCRIM技术作为闪烁材料定量表征工具的潜力。 ©2013 IOP Publishing Ltd和Sissa Medialab srl。

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