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Characterization of Single-Photon Time Resolution: From Single SPAD to Silicon Photomultiplier

机译:单光子时间分辨率的表征:从单SPAD到硅光电倍增管

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In this paper, we report on the characterization of the single-photon time resolution (SPTR) of the RGB (Red-Green-Blue) type silicon photomultipliers (SiPM) produced at FBK. We measured and compared single-photon timing jitter of $1 times 1~hbox{mm}^2$ and $3 times 3~hbox{mm}^2$ SiPMs, and also of square SPADs with integrated passive quenching, identical to the cells composing the SiPMs. We reached a single-photon time resolution of about 180 ps full-width at half-maximum for $3 times 3~hbox{mm}^2$ SiPM, 80 ps for $1 times 1~hbox{mm}^2$ SiPM and less than 50 ps for single cells. From measurements with pinholes placed in front of $1 times 1~hbox{mm}^2$ detector we see a very good cell-to-cell uniformity: it is not a limiting factor for time resolution. We also characterized the timing jitter of SiPMs as a function of the number of photons per laser pulse (N) finding that it does not decrease exactly with the square root of N because of the optical crosstalk between cells.
机译:在本文中,我们报告了FBK生产的RGB(红-绿-蓝)型硅光电倍增管(SiPM)的单光子时间分辨率(SPTR)的特性。我们测量并比较了 $ 1乘以1〜hbox {mm} ^ 2 $ $ 3乘以3〜hbox {mm} ^ 2 $ SiPM,以及带有集成被动淬火的方形SPAD,与组成SiPM的单元相同。对于 $ 3乘以3〜hbox {mm} ^ 2 $ SiPM,对于 $ 1乘以1〜hbox {mm} ^ 2 $ SiPM,小于80则为80ps单个单元的ps。通过将针孔放置在 $ 1乘以1〜hbox {mm} ^ 2 $ 检测器的前面进行测量,我们看到一个非常好的单元格到单元的均匀性:这不是时间分辨率的限制因素。我们还将SiPM的定时抖动作为每个激光脉冲(N)的光子数的函数进行了表征,发现由于细胞之间的光学串扰,它不会随N的平方根精确降低。

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