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用于TOF-PET的与溴化镧铈耦合的新型近紫外硅光电倍增管的定时和能量分辨率

Timing and Energy Resolution of new near-UV SiPMs coupled to LaBr:Ce for TOF-PET.

作者信息

Schmall Jeffrey P, Wiener Rony I, Surti Suleman, Ferri Alessandro, Gola Alberto, Tarolli Alessandro, Piemonte Claudio, Karp Joel S

机构信息

University of Pennsylvania, Philadelphia, PA 19104 (telephone: 215-662-6964).

Fondazione Bruno Kessler, Trento, Italy (telephone: +39 0461314428).

出版信息

IEEE Trans Nucl Sci. 2014 Oct;61(5):2426-2432. doi: 10.1109/TNS.2014.2346579.

Abstract

The high light output and fast decay time of LaBr:Ce scintillation detectors leads to excellent timing performance. To realize the potential of timing resolution with LaBr:Ce we have investigated the performance with SiPMs, which enable 1-to-1 coupling to individual crystals, and which have been optimized for the near-ultraviolet (NUV) scintillation light emission of LaBr:Ce. Coincidence timing resolution (CTR) of 100 ps was measured for a 4×4×5 mm LaBr:30%Ce crystal directly coupled to a large-area 4×4 mm NUV-SiPM. Results show very little dependence on temperature, in the range of -20° to 20°C, and bias voltage, from 2 V to 5 V over breakdown. Optimal performance was achieved at an over-voltage (OV) range of 3 V - 5 V, at which high gain and high photon detection efficiency are achieved. Though saturation was evident at 511 keV, an energy resolution of 6.8% was measured after correcting for non-linearity. We also measured a CTR of 110 ps for a 4×4×5mm LaBr:5%Ce crystal and 245 ps for a 4×4×30 mm LaBr:5%Ce crystal using the NUV-SIPM. The poorer timing measurement for the 30-mm long crystal is due mainly to a systematic shift in the time pick-off as a function of the depth-of-interaction. The excellent temperature stability, fast rise time, high gain, and low noise of the NUV-SiPM make it a practical and highly appealing photodetector for the readout of a LaBr:Ce TOF-PET detector.

摘要

溴化镧铈(LaBr:Ce)闪烁探测器的高光输出和快速衰减时间使其具有出色的计时性能。为了实现溴化镧铈(LaBr:Ce)的计时分辨率潜力,我们研究了其与硅光电倍增管(SiPMs)配合使用时的性能,硅光电倍增管能够与单个晶体进行一对一耦合,并且针对溴化镧铈(LaBr:Ce)的近紫外(NUV)闪烁光发射进行了优化。对于直接耦合到大面积4×4 mm NUV-SiPM的4×4×5 mm溴化镧铈(LaBr:30%Ce)晶体,测量到的符合计时分辨率(CTR)为100 ps。结果表明,在-20°C至20°C的温度范围内以及2 V至5 V的击穿偏置电压范围内,其对温度和偏置电压的依赖性很小。在3 V - 5 V的过电压(OV)范围内实现了最佳性能,此时可实现高增益和高光子探测效率。尽管在511 keV时明显出现饱和现象,但在校正非线性后测量到的能量分辨率为6.8%。我们还使用NUV-SIPM测量了4×4×5mm溴化镧铈(LaBr:5%Ce)晶体的CTR为110 ps,以及4×4×30 mm溴化镧铈(LaBr:5%Ce)晶体的CTR为245 ps。对于30 mm长的晶体,计时测量结果较差主要是由于时间提取随相互作用深度的系统偏移。NUV-SiPM出色的温度稳定性、快速上升时间、高增益和低噪声使其成为用于读出溴化镧铈(LaBr:Ce)飞行时间正电子发射断层扫描(TOF-PET)探测器的实用且极具吸引力的光电探测器。

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