Hwang Wonsang, Kim Dongeun, Moon Sucbei, Kim Dug Young
Opt Express. 2021 Mar 29;29(7):9797-9804. doi: 10.1364/OE.419896.
We report an enhanced photon count rate in a digitally implemented time-correlated single-photon counting (TCSPC) system by utilizing a hybrid photodetector (HPD). In our digital TCSPC scheme, the photoelectronic responses from a single photon-sensitive photodetector are digitally analyzed through a high-speed analog-to-digital convertor (ADC). By virtue of the HPD which provides nearly a constant signal gain, the single-photon pulses can be effectively distinguished from pulses of simultaneously detected multiple photons by the pulse heights. Consequently, our digital TCSPC system can selectively collect single-photon signals even in the presence of intense multi-photon detections with its temporal accuracy not to be compromised. In our experiment of fluorescence lifetime measurement, the maximum count rate of single photons nearly reached the theoretical limit given by the Poisson statistics. This demonstrated that the digital TCSPC combined with the HPD provides an ultimate solution for the TCSPC implementation for high photon count rates.
我们报告了一种通过使用混合光电探测器(HPD)在数字实现的时间相关单光子计数(TCSPC)系统中提高光子计数率的方法。在我们的数字TCSPC方案中,来自单个光子敏感光电探测器的光电子响应通过高速模数转换器(ADC)进行数字分析。借助提供几乎恒定信号增益的HPD,可以通过脉冲高度有效地将单光子脉冲与同时检测到的多个光子的脉冲区分开来。因此,我们的数字TCSPC系统即使在存在强烈多光子检测的情况下也能选择性地收集单光子信号,且其时间精度不会受到影响。在我们的荧光寿命测量实验中,单光子的最大计数率几乎达到了泊松统计给出的理论极限。这表明数字TCSPC与HPD相结合为高光子计数率的TCSPC实现提供了最终解决方案。