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SiPM-matrix readout of two-phase argon detectors using electroluminescence in the visible and near infrared range

机译:使用电致发光在可见和近红外范围内的两相氩检测器的SiPM - 矩阵读数

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Proportional electroluminescence (EL) in noble gases is used in two-phase detectors for dark matter searches to record (in the gas phase) the ionization signal induced by particle scattering in the liquid phase. The “standard” EL mechanism is considered to be due to noble gas excimer emission in the vacuum ultraviolet (VUV). In addition, there are two alternative mechanisms, producing light in the visible and near infrared (NIR) ranges. The first is due to bremsstrahlung of electrons scattered on neutral atoms (“neutral bremsstrahlung”, NBrS). The second, responsible for electron avalanche scintillation in the NIR at higher electric fields, is due to transitions between excited atomic states. In this work, we have for the first time demonstrated two alternative techniques of the optical readout of two-phase argon detectors, in the visible and NIR range, using a silicon photomultiplier matrix and electroluminescence due to either neutral bremsstrahlung or avalanche scintillation. The amplitude yield and position resolution were measured for these readout techniques, which allowed to assess the detection threshold for electron and nuclear recoils in two-phase argon detectors for dark matter searches. To the best of our knowledge, this is the first practical application of the NBrS effect in detection science.
机译:惰性气体中的比例电致发光(EL)用于两相检测器,用于暗物体搜索以记录(在气相中)通过液相中的颗粒散射引起的电离信号。 “标准”EL机构被认为是由于真空紫外(VUV)中的惰性气体准分子发射。另外,存在两种替代机构,在可见光和近红外(NIR)范围内产生光。第一个是由于散落在中性原子上的电子(“中性Bremsstrahlung”,NBRS)的Bremsstrahlung。第二个,负责在较高电场的NIR中的电子雪崩闪烁,是由于激发原子态之间的转变。在这项工作中,我们首次使用硅光电倍增管基质和由于中性Bremsstrahlung或雪崩闪烁而在可见和NIR范围内展示了两相氩检测器的光学读出的两种替代技术。测量这些读出技术的幅度产量和位置分辨率,其允许评估电子和核反冲中的检测阈值,用于两相氩检测器中的暗物质搜索。据我们所知,这是NBRS在检测科学中的第一次实际应用。

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