Department of Radiology, Stanford University, Stanford, CA, United States of America.
Phys Med Biol. 2018 Sep 19;63(18):185022. doi: 10.1088/1361-6560/aadbcd.
A key step to improve the coincidence time resolution of positron emission tomography detectors that exploit small populations of promptly emitted photons is improving the single photon time resolution (SPTR) of silicon photomultipliers (SiPMs). The influence of electronic noise has previously been identified as the dominant factor affecting SPTR for large area, analog SiPMs. In this work, we measure the achievable SPTR with front end electronic readout that minimizes the influence of electronic noise. With this readout circuit, the SPTR measured for one FBK NUV single avalanche photodiode (SPAD) was also achieved with a [Formula: see text] mm FBK NUV SiPM. SPTR for large area devices was also significantly improved. The measured SPTRs for [Formula: see text] mm Hamamatsu and SensL SiPMs were [Formula: see text]150 ps FWHM, and SPTR [Formula: see text]100 ps FWHM was measured for [Formula: see text] mm and [Formula: see text] mm FBK NUV and NUV-HD SiPMs. We also explore additional factors affecting the achievable SPTR for large area, analog SiPMs when the contribution of electronic noise is minimized and pinpoint potential areas of improvement to further reduce the SPTR of large area sensors towards that achievable for a single SPAD.
提高利用瞬时发射的少量光子的正电子发射断层扫描探测器符合时间分辨率的一个关键步骤是提高硅光电倍增管(SiPM)的单光子时间分辨率(SPTR)。先前已经确定,电子噪声的影响是影响大面积模拟 SiPM 的 SPTR 的主要因素。在这项工作中,我们通过最小化电子噪声影响的前端电子读出测量了可实现的 SPTR。使用这种读出电路,还实现了用[Formula: see text]mm FBK NUV SiPM 实现一个 FBK NUV 单雪崩光电二极管(SPAD)的可测量 SPTR。还显著提高了大面积器件的 SPTR。测量的[Formula: see text]mm Hamamatsu 和 SensL SiPM 的 SPTR 分别为[Formula: see text]150 ps FWHM,并且对于[Formula: see text]mm 和[Formula: see text]mm FBK NUV 和 NUV-HD SiPM,测量的 SPTR[Formula: see text]100 ps FWHM。我们还探索了在最小化电子噪声贡献时影响大面积模拟 SiPM 可实现的 SPTR 的其他因素,并指出了进一步降低大面积传感器的 SPTR 以实现单个 SPAD 可实现的 SPTR 的潜在改进领域。