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Fast-gated single-photon detectors boost dynamic range in NIR spectroscopy

机译:快速门控单光子探测器在NIR光谱中提升动态范围

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We present a novel instrumentation for wide dynamic range optical investigations based on a time-gated silicon Single-Photon Avalanche Diode (SPAD) in a Time-Correlated Single-Photon Counting (TCSPC) setup. The detector is gated-on and off in less than 200 ps and kept-on for detecting photons only within short time slots. Such technique is particularly useful in applications where a large amount of unnecessary photons precedes or follows the optical signal to detect, such as in time-resolved NIR spectroscopy, optical mammography, and optical molecular imaging. In particular, in time-resolved reflectance spectroscopy, when the source-detector separation is decreased, the detection electronics easily saturates, due to the huge amount of "early" photons, diffused by superficial layers. Instead, our setup is able to reject those photons and to detect only "late" photons, thus allowing to increase the injected power and to drastically widen the investigation dynamic range, while remarkably speeding up the acquisition. We acquired Instrument Response Functions (IRFs) at multiple wavelengths between 600 nm and 1000 nm and we achieved up to 108 dynamic range in a very short measurement time (few minutes). Moreover, we tested the instrumentation with SPADs of different active areas and we compared the performances.
机译:我们在时间相关的单光子计数(TCSPC)设置中,基于时隙硅单光子雪崩二极管(SPAD)提出了一种用于宽动态范围光学研究的新颖仪表。检测器在小于200ps的小于200 ps中凸出和关闭,并且仅在短时间内检测光子。这种技术在大量不必要的光子之前或遵循光学信号检测的应用中特别有用,例如在时间分辨的NIR光谱,光学乳房X线乳腺术术和光学分子成像。特别地,在时间分辨反射光谱的情况下,当源检测器分离减小时,检测电子器件由于大量的“早期”光子而被浅表层扩散而容易饱和。相反,我们的设置能够拒绝那些光子并仅检测“晚期”光子,从而允许增加注入的功率并彻底扩大调查动态范围,同时显着加速采集。我们在600nm和1000nm之间的多个波长下获取了仪器响应函数(IRF),并且在非常短的测量时间(几分钟)中,我们实现了高达108个动态范围。此外,我们用不同的活动区域的Spad测试了仪器,我们比较了表演。

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