Increasing the collection efficiency of time-correlated single-photon counting with single-photon avalanche diodes using immersion lenses

被引:1
|
作者
Pichette, Charles [1 ,2 ]
Giudice, Andrea [3 ]
Thibault, Simon [1 ,2 ]
Berube-Lauziere, Yves [4 ]
机构
[1] Univ Laval, Ctr Opt Photon & Laser, Quebec City, PQ G1K 7P4, Canada
[2] Univ Laval, Dept Phys Genie Phys & Opt, Quebec City, PQ G1K 7P4, Canada
[3] Micro Photon Devices Srl, Via Stradivari 4, I-39100 Bolzano, Italy
[4] Univ Sherbrooke, Dept Elect & Comp Engn, 2500 Blvd Univ, Sherbrooke, PQ J1K 2R1, Canada
基金
加拿大自然科学与工程研究理事会;
关键词
Signal to noise ratio;
D O I
10.1364/AO.55.009555
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
Single-photon avalanche diodes (SPADs) achieving high timing resolution (approximate to 20-50 ps) developed for timecorrelated single-photon counting (TCSPC) generally have very small photosensitive areas (25-100 mu m in diameter). This limits the achievable photon counting rate and signal-to-noise ratio and may lead to long counting times. This is detrimental in applications requiring several measurements, such as fluorescence lifetime imaging (FLIM) microscopy, which requires scanning, and time-domain diffuse optical tomography (TD-DOT). We show in this work that the use of an immersion lens directly affixed onto the photosensitive area of the SPAD helps alleviate this problem by allowing more light to be concentrated onto the detector. Following careful optical design and simulations, our experimental results show that it is actually possible to achieve the predicted theoretical increase in the photon counting rate (we achieve a factor of approximate to 4 here). This work is of high relevance in high timing resolution TCSPC with small photosensitive area detectors and should find widespread interest in FLIM and TD-DOT with SPADs. (C) 2016 Optical Society of America
引用
收藏
页码:9555 / 9562
页数:8
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