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FPGA-based photon-counting phase-modulation fluorometer and a brief comparison with that operated in a pulsed-excitation mode

机译:基于FPGA的光子计数相位调制荧光计和与脉冲激励模式操作的简要比较

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摘要

We have constructed a high-efficiency, photon-counting phase-modulation fluorometer (PC-PMF) using a field-programmable gate array, which is a modified version of the photon-counting fluorometer (PCF) that works in a pulsed-excitation mode (Iwata and Mizuno in Meas Sci Technol 28: 075501, 2017). The common working principle for both is the simultaneous detection of the photoelectron pulse train, which covers 64 ns with a 1.0-ns resolution time (1.0 ns/channel). The signal-gathering efficiency was improved more than 100 times over that of conventional time-correlated single-photon-counting at the expense of resolution time depending on the number of channels. The system dead time for building a histogram was eliminated, markedly shortening the measurement time for fluorescent samples with moderately high quantum yields. We describe the PC-PMF and make a brief comparison with the pulsed-excitation PCF in precision, demonstrating the potential advantage of PC-PMF.
机译:我们使用现场可编程门阵列构建了高效率,光子计数相位调制荧光计(PC-PMF),该栅极阵列是在脉冲激励模式下工作的光子计数荧光计(PCF)的修改版本 (岩浆和Mizuno在MEAS SCI Technol 28:075501,2017)。 普遍的工作原理是同时检测光电子脉冲系,其覆盖具有1.0ns分辨率的64 ns(1.0 ns /频道)。 根据通道的数量,信号收集效率提高了以传统的时间相关单光子计数的传统单光子计数的增加100倍。 消除了构建直方图的系统死区时间,显着缩短了具有中等高量子产率的荧光样品的测量时间。 我们描述了PC-PMF,并在精确度下与脉冲激励PCF进行了简短的比较,展示了PC-PMF的潜在优势。

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