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Scintillator counters with WLS fiber/MPPC readout for the side muon range detector (SMRD)of the T2K experiment

机译:T2K实验的侧向介子距离检测器(SMRD)的WLS光纤/ MPPC读数闪烁体计数器

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摘要

The T2K neutrino experiment at J-PARC uses a set of near detectors to measure the properties of an unoscillated neutrino beam and neutrino interaction cross-sections. One of the sub-detectors of the near-detector complex, the side muon range detector (SMRD), is described in the paper. The detector is designed to help measure the neutrino energy spectrum, to identify background and to calibrate the other detectors. The active elements of the SMRD consist of 0.7 cm thick extruded scintillator slabs inserted into air gaps of the UA1 magnet yokes. The readout of each scintillator slab is provided through a single WLS fiber embedded into a serpentine-shaped groove. Two Hamamatsu multi–pixel avalanche photodiodes (MPPC's) are coupled to both ends of the WLS fiber. This design allows us to achieve a high MIP detection efficiency of greater than 99%. A light yield of 25–50 p.e./MIP, a time resolution of about 1 ns and a spatial resolution along the slab better than 10 cm were obtained for the SMRD counters.
机译:在J-PARC的T2K中微子实验中,使用了一组近探测器来测量未振荡的中微子束和中微子相互作用截面的特性。本文描述了近探测器复合体的一个子探测器,即侧面μ子范围探测器(SMRD)。该探测器旨在帮助测量中微子能谱,识别背景并校准其他探测器。 SMRD的有源元件由插入UA1磁轭气隙中的0.7厘米厚的挤压闪烁板组成。每个闪烁体平板的读数是通过嵌入蛇形凹槽中的一条WLS光纤提供的。两个滨松多像素雪崩光电二极管(MPPC)耦合到WLS光纤的两端。这种设计使我们可以实现大于99%的高MIP检测效率。对于SMRD计数器,可获得25–50 p.e./MIP的光输出,约1 ns的时间分辨率和沿平板的空间分辨率优于10 cm。

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