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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. B, Beam Interactions with Materials and Atoms >Improving the light collection using a new Nal(Tl) crystal encapsulation
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Improving the light collection using a new Nal(Tl) crystal encapsulation

机译:使用新的NAL(TL)水晶封装改善光收集

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摘要

NaI(Tl) crystals are used as particle detectors in a variety of rare-event search experiments because of their superb light-emission quality. The crystal light yield is generally high, above 10 photoelectrons per keV, and its emission spectrum is peaked around 400 nm, which matches well to the sensitive region of bialkali photocathode photomultiplier tubes. However, since NaI(Tl) crystals are hygroscopic, a sophisticated method of encapsulation has to be applied that prevents moisture from chemically attacking the crystal and thereby degrading the emission. In addition, operation with low energy thresholds, which is essential for a number of new phenomenon searches, is usually limited by the crystal light yield; in these cases higher light yields can translate into lower thresholds that improve the experimental sensitivity. Here we describe the development of an encapsulation technique that simplifies the overall design by attaching the photo sensors directly to the crystal so that light losses are minimized. The light yield of a NaI(Tl) crystal encapsulated with this technique was improved by more than 30%, and as many as 22 photoelectrons per keV have been measured. Consequently, the energy threshold can be lowered and the energy resolution improved. Detectors with this higher light yield are sensitive to events with sub-keV energies and well suited for low-mass dark matter particle searches and measurements of neutrino-nucleus coherent scattering.
机译:Nai(TL)晶体用作各种稀有事件搜索实验中的粒子检测器,因为它们的发光质量很高。晶体光产率通常高,高于10的光电子,其发射光谱达到约400nm,其与Bialkali光电阴极光电倍增管的敏感区域相匹配。然而,由于NaI(TL)晶体是吸湿的,必须施加一种复杂的封装方法,其防止水分从化学攻击晶体,从而降低发射。另外,具有低能量阈值的操作,这对于许多新现象搜索是必不可少的,通常受晶光率的限制;在这些情况下,较高的光率可以转化为改善实验敏感性的较低阈值。在这里,我们描述了一种通过将光传感器直接连接到晶体而简化了整体设计的封装技术,以便最小化光损失。用该技术封装的Nai(TL)晶体的光产量提高了30%以上,并且已经测量了每keV的多达22个光电子。因此,可以降低能量阈值并且能量分辨率得到改善。具有这种较高的光收率的探测器对具有子keV能量的事件敏感,并且适用于低质量的暗物质粒子搜索和中微核相干散射的测量。

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    Department of Physics and Astronomy Seoul National University Seoul 08826 Republic of Korea;

    IBS School University of Science and Technology (UST) Daejeon 34113 Republic of Korea Center for Underground Physics Institute for Basic Science (IBS) Daejeon 34126 Republic of Korea;

    Department of Physics Chung-Ang University Seoul 06973 Republic of Korea;

    Center for Underground Physics Institute for Basic Science (IBS) Daejeon 34126 Republic of Korea;

    Department of Physics and Astronomy Seoul National University Seoul 08826 Republic of Korea;

    IBS School University of Science and Technology (UST) Daejeon 34113 Republic of Korea Center for Underground Physics Institute for Basic Science (IBS) Daejeon 34126 Republic of Korea;

    Center for Underground Physics Institute for Basic Science (IBS) Daejeon 34126 Republic of Korea;

    IBS School University of Science and Technology (UST) Daejeon 34113 Republic of Korea Center for Underground Physics Institute for Basic Science (IBS) Daejeon 34126 Republic of Korea;

    IBS School University of Science and Technology (UST) Daejeon 34113 Republic of Korea Center for Underground Physics Institute for Basic Science (IBS) Daejeon 34126 Republic of Korea;

    Center for Underground Physics Institute for Basic Science (IBS) Daejeon 34126 Republic of Korea;

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  • 正文语种 eng
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  • 关键词

    NaI(Tl); Light yield; Inorganic scintillator; Dark matter; Encapsulation;

    机译:nai(tl);光收益;无机闪烁体;暗物质;封装;

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