Improving the Time Resolution of Large-Area LaBr3:Ce Detectors with SiPM Array Readout

IF 1.9 Q3 PHYSICS, CONDENSED MATTER Condensed Matter Pub Date : 2023-11-17 DOI:10.3390/condmat8040099
M. Bonesini, R. Bertoni, A. Abba, F. Caponio, M. Prata, M. Rossella
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Abstract

LaBr3:Ce crystals have good scintillation properties for X-ray spectroscopy. Initially, they were introduced for radiation imaging in medical physics with either a photomultiplier or SiPM readout, and they found extensive applications in homeland security and gamma-ray astronomy. We used 1″ round LaBr3:Ce crystals to realize compact detectors with the SiPM array readout. The aim was a good energy resolution and a fast time response to detect low-energy X-rays around 100 keV. A natural application was found inside the FAMU experiment, at RIKEN RAL. Its aim is a precise measurement of the proton Zemach radius with impinging muons, to contribute to the solution to the so-called “proton radius puzzle”. Signals to be detected are characteristic X-rays around 130 KeV. A limit for this type of detector, as compared to the ones with a photomultiplier readout, is its poorer timing characteristics due to the large capacity of the SiPM arrays used. In particular, long signal falltimes are a problem in experiments such as FAMU, where a “prompt” background component must be separated from a “delayed” one (after 600 ns) in the signal X-rays to be detected. Dedicated studies were pursued to improve the timing characteristics of the used detectors, starting from hybrid ganging of SiPM cells; then developing a suitable zero pole circuit with a parallel ganging, where an increased overvoltage for the SiPM array was used to compensate for the signal decrease; and finally designing ad hoc electronics to split the 1″ detector’s SiPM array into four quadrants, thus reducing the involved capacitances. The aim was to improve the detectors’ timing characteristics, especially falltime, while keeping a good FWHM energy resolution for low-energy X-ray detection.
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利用 SiPM 阵列读出提高大面积 LaBr3:Ce 探测器的时间分辨率
LaBr3:Ce 晶体在 X 射线光谱学中具有良好的闪烁特性。最初,它们被用于医学物理学中的辐射成像,并配有光电倍增管或 SiPM 读出器,后来在国土安全和伽马射线天文学中得到了广泛应用。我们使用 1 英寸圆形 LaBr3:Ce 晶体实现了带有 SiPM 阵列读出器的紧凑型探测器。我们的目标是以良好的能量分辨率和快速的时间响应来探测 100 千伏左右的低能 X 射线。在 RIKEN RAL 的 FAMU 实验中发现了一个自然应用。其目的是精确测量撞击μ介子的质子泽马赫半径,为解决所谓的 "质子半径之谜 "做出贡献。要探测的信号是 130 KeV 左右的特征 X 射线。与采用光电倍增管读出的探测器相比,这类探测器的一个局限是,由于使用的 SiPM 阵列容量较大,其定时特性较差。特别是在像 FAMU 这样的实验中,较长的信号衰减时间是一个问题,在这种实验中,"迅速 "背景成分必须与要探测的 X 射线信号中的 "延迟 "背景成分(600 毫微秒后)分开。为了改进所用探测器的定时特性,我们进行了专门的研究,首先是将 SiPM 单元混合成组;然后是开发一个合适的并联零极电路,利用增加 SiPM 阵列的过电压来补偿信号的减弱;最后是设计专门的电子设备,将 1 英寸探测器的 SiPM 阵列分成四个象限,从而减少所涉及的电容。目的是改进探测器的定时特性,特别是衰落时间,同时保持良好的 FWHM 能量分辨率,用于低能 X 射线探测。
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来源期刊
Condensed Matter
Condensed Matter PHYSICS, CONDENSED MATTER-
CiteScore
2.90
自引率
11.80%
发文量
58
审稿时长
10 weeks
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