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LGSO scintillation crystals coupled to new large area APDs compared to LSO and BGO

机译:与LSO和BGO相比,LGSO闪烁晶体与新的大面积APD耦合

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摘要

Recent developments of large area avalanche photodiodes (APDs) and fast scintillators with high light yield offer unique advantages for imaging applications. To test possible scintillator-APD combinations, 3.7/spl times/3.7/spl times/12.0 mm/sup 3/ LGSO, BGO and LSO crystals were coupled to large area, low capacitance, round and rectangular APDs (5 mm diameter, 3/spl times/3 mm/sup 2/ and 5/spl times/5 mm/sup 2/, Hamamatsu, Japan). Light output, energy resolution and time resolution were compared. The light output of BGO was about 86% worse and of LGSO about 30% worse compared to LSO (100%). The energy resolution at 511 keV was 13.8/spl plusmn/0.5% for LSO and 15.1/spl plusmn/0.5% for LGSO (FWHM). For BGO, 16.9/spl plusmn/0.5% (FWHM) was measured at 662 keV. The coincident time resolution of two opposing single detectors was 2.7/spl plusmn/0.2 ns for LSO and 3.9/spl plusmn/0.2 ns for LGSO (FWHM). Chemical treatment of crystals showed an improved energy resolution compared to mechanical polishing of more than 1%, providing reduced cost and less processing time. An energy resolution of 10.7/spl plusmn/0.5% for LSO could be reached after chemical etching. With the new large area APDs, results similar to PMT readout could be achieved. The scintillation characteristic of LGSO makes this material a promising candidate for APD readout, although the performance was inferior to LSO.
机译:具有高光产率的大面积雪崩光电二极管(APD)和快速闪烁器的最新发展为成像应用提供了独特的优势。为了测试可能的闪烁体-APD组合,将3.7 / spl次/3.7/spl次/12.0 mm / sup 3 / LGSO,BGO和LSO晶体耦合到大面积,低电容,圆形和矩形APD(直径5 mm,3 / spl times / 3 mm / sup 2 /和5 / spl times / 5 mm / sup 2 /,日本滨松)。比较了光输出,能量分辨率和时间分辨率。与LSO(100%)相比,BGO的光输出差了约86%,LGSO的光输出差了约30%。对于LSO,在511 keV下的能量分辨率为13.8 / spl加/0.5%;对于LGSO(FWHM),为15.1 / spl加/0.5%。对于BGO,在662 keV处测得了16.9 / spl的正负/0.5%(FWHM)。对于LSO,两个相对的单个检测器的同时时间分辨率为2.7 / spl plusmn / 0.2 ns,而对于LGSO(FWHM),则为3.9 / spl plusmn / 0.2 ns。与机械抛光相比,对晶体进行化学处理显示出更高的能量分辨率,超过1%,从而降低了成本并缩短了处理时间。化学蚀刻后,LSO的能量分辨率可达10.7 / spl plusmn / 0.5%。使用新的大面积APD,可以实现类似于PMT读数的结果。 LGSO的闪烁特性使该材料成为APD读数的有希望的候选者,尽管其性能不如LSO。

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