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Arrays of digital Silicon Photomultipliers — Intrinsic performance and application to scintillator readout

机译:数字硅光电倍增管阵列—本质性能及其在闪烁体读数中的应用

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Arrays of digital Silicon Photomultipliers (dSiPMs) have been developed. The arrays consist of 4 × 4 chips, each containing 2 × 2 dSiPMs, resulting in 8 × 8 dSiPMs on one array. With a pitch of 4 mm × 4 mm of the dSiPMs, the outer dimension of the array is 32 mm × 32 mm. To show the performance of the detector array, we investigated its intrinsic performance with respect to timing resolution using an external electronic trigger and picosecond laser pulses acting as an optical trigger. In addition, we show results of coupling arrays of 8 × 8 LYSO crystals with 4 mm × 4 mm pitch and 22 mm length to the detector arrays leading to a 1:1 coupling between the individual scintillator crystals and the dSiPM pixels. Two arrays have been operated in coincidence using 22Na as a source for annihilation gamma radiation in order to record energy and coincidence timing resolution.
机译:已经开发了数字硅光电倍增管(dSiPM)的阵列。阵列由4×4芯片组成,每个芯片包含2×2 dSiPM,在一个阵列上产生8×8 dSiPM。在dSiPM的间距为4 mm×4 mm的情况下,阵列的外部尺寸为32 mm×32 mm。为了显示检测器阵列的性能,我们使用外部电子触发器和皮秒激光脉冲作为光学触发器,研究了其在定时分辨率方面的内在性能。此外,我们显示了8×8 LYSO晶体的节距为4 mm×4 mm,长度为22 mm的阵列与检测器阵列的耦合结果,从而导致单个闪烁体晶体与dSiPM像素之间的耦合为1:1。为了记录能量和同时定时分辨率,使用 22 Na作为an灭γ射线的辐射源,同时操作了两个阵列。

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