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Development of SiPM-based scintillator tile detectors for a multi-layer fast neutron tracker

机译:基于SIPM的闪烁瓦探测器的多层快速中子跟踪器的开发

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We are developing thin tile scintillator detectors with silicon photomultiplier (SiPM) readout for use in a multi-layer fast-neutron tracker. The tracker is based on interleaved Timepix and plastic scintillator layers. The thin 15 × 15 × 2 mm plastic scintillators require suitable optical readout in order to detect and measure the energy lost by energetic protons that have been recoiled by fast neutrons. Our first prototype used dual SiPMs, coupled to opposite edges of the scintillator tile using light-guides. An alternative readout geometry was designed in an effort to increase the fraction of scintillation light detected by the SiPMs. The new prototype uses a larger SiPM array to cover the entire top face of the tile. This paper details the comparative performance of the two prototype designs. A deuterium-tritium (DT) fast-neutron source was used to compare the relative light collection efficiency of the two designs. A collimated UV light source was scanned across the detector face to map the uniformity. The new prototype was found to have 9.5 times better light collection efficiency over the original design. Both prototypes exhibit spatial non-uniformity in their response. Methods of correcting this non-uniformity are discussed.
机译:我们正在使用硅光电倍增器(SIPM)读出开发薄的瓷砖闪烁体探测器,用于多层快速中子跟踪器。跟踪器基于交织的TimePix和塑料闪烁体层。薄的15×15×2mm塑料闪烁体需要合适的光学读数,以便检测和测量由快速中子重新压制的能量质子损失的能量。我们的第一个原型使用了双纱线,使用光导的闪烁体瓦片的相对边缘。设计了一种替代的读数几何形状,以增加由SIPMS检测到的闪烁光的分数。新的原型使用较大的SIPM阵列来覆盖瓦片的整个顶面。本文详细介绍了两个原型设计的比较表现。使用氘 - 氚(DT)快上源来比较两种设计的相对光收集效率。在探测器面上扫描准直的UV光源以映射均匀性。在原始设计上发现了新的原型具有9.5倍的光收集效率。这两个原型都在其响应中表现出空间不均匀性。讨论了校正这种不均匀性的方法。

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