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Cold neutron radiation dose effects on a ~6LiF:ZnS(Ag) neutron detector with wavelength shifting fibers and SiPM photodetector

机译:具有波长移位纤维和SIPM光电探测器的冷中子辐射剂量效应〜6LIF:ZnS(Ag)中子检测器

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摘要

A ~6LiF:ZnS(Ag) based cold neutron detector with wavelength shifting (WLS) fibers and SiPM photodetector was developed at the NIST Center for Neutron Research for the CANDoR instrument (Chromatic Analysis Neutron Diffractometer or Reflectometer). A series of detectors were irradiated with neutron doses ranging between 1E+11 n/cm~2 to 6E+12 n/cm~2. It was found that the neutron absorbing ~6Li isotope was not measurably depleted, but the photonic yield of the detector deteriorated with increasing neutron dose. Photonic yields were compared before and after neutron exposure by comparing pulse energy spectrum photopeaks before and after exposure. A typical detector used in the CANDoR instrument is expected to withstand a cumulative cold neutron dose of at least 1E+12 n/cm~2 before degrading to an unfit state. The component parts of the detector could not be separated, so the degradation of the bulk scintillator and WLS fibers could not be gauged separately.
机译:A〜6LIF:ZnS(Ag)具有波长移位(WLS)纤维和SIPM光电探测器的ZnS(Ag)的冷中子检测器在NIST仪器的中子研究中心开发了SIPM光电探测器(色谱分析中子衍射仪或反射仪)。用中子剂量照射一系列探测器,范围在1e + 11n / cm〜2至6e + 12n / cm〜2之间。发现中子吸收〜6Li同位素未被测量耗尽,但检测器的光子产量随着中子剂量的增加而劣化。通过比较脉冲能谱光曝光之前和暴露之前和之后的中子曝光前后比较光子产量。预计坦率仪器中使用的典型检测器预计在降解到不合适的状态之前抵抗至少1E + 12 n / cm〜2的累积冷中子剂量。检测器的组分部分不能分开,因此不能单独测量散装闪烁体和WLS纤维的劣化。

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    NIST Center for Neutron Research Gaithersburg MD United States of America;

    NIST Physical Measurement Laboratory Gaithersburg MD United States of America;

    Rotem Industries Ltd Rotem Industrial Park Israel;

    NIST Center for Neutron Research Gaithersburg MD United States of America;

    NIST Center for Neutron Research Gaithersburg MD United States of America;

    NIST Center for Neutron Research Gaithersburg MD United States of America;

    NIST Center for Neutron Research Gaithersburg MD United States of America;

    Eljen Technology Sweetwater TX United States of America;

    Eljen Technology Sweetwater TX United States of America;

    NIST Center for Neutron Research Gaithersburg MD United States of America;

    NIST Center for Neutron Research Gaithersburg MD United States of America;

    NIST Center for Neutron Research Gaithersburg MD United States of America;

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