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用于提高单分子定位显微镜中小像素SPAD阵列收集效率的柱面微透镜技术。

Cylindrical microlensing for enhanced collection efficiency of small pixel SPAD arrays in single-molecule localisation microscopy.

作者信息

Gyongy Istvan, Davies Amy, Gallinet Benjamin, Dutton Neale A W, Duncan Rory R, Rickman Colin, Henderson Robert K, Dalgarno Paul A

出版信息

Opt Express. 2018 Feb 5;26(3):2280-2291. doi: 10.1364/OE.26.002280.

Abstract

Single-photon avalanche photodiode (SPAD) image sensors offer time-gated photon counting, at high binary frame rates of >100 kFPS and with no readout noise. This makes them well-suited to a range of scientific applications, including microscopy, sensing and quantum optics. However, due to the complex electronics required, the fill factor tends to be significantly lower (< 10%) than that of EMCCD and sCMOS cameras (>90%), whilst the pixel size is typically larger, impacting the sensitivity and practicalities of the SPAD devices. This paper presents the first characterisation of a cylindrical-shaped microlens array applied to a small, 8 micron, pixel SPAD imager. The enhanced fill factor, ≈50% for collimated light, is the highest reported value amongst SPAD sensors with comparable resolution and pixel pitch. We demonstrate the impact of the increased sensitivity in single-molecule localisation microscopy, obtaining a resolution of below 40nm, the best reported figure for a SPAD sensor.

摘要

单光子雪崩二极管(SPAD)图像传感器可实现时间选通光子计数,具有大于100 kFPS的高二进制帧率且无读出噪声。这使其非常适合一系列科学应用,包括显微镜检查、传感和量子光学。然而,由于所需的复杂电子设备,填充因子往往比电子倍增电荷耦合器件(EMCCD)和科学互补金属氧化物半导体(sCMOS)相机(>90%)低得多(<10%),而像素尺寸通常更大,这影响了SPAD器件的灵敏度和实用性。本文首次对应用于小型8微米像素SPAD成像器的圆柱形微透镜阵列进行了表征。对于准直光,增强后的填充因子约为50%,是具有可比分辨率和像素间距的SPAD传感器中报道的最高值。我们展示了单分子定位显微镜中灵敏度提高的影响,获得了低于40nm的分辨率,这是SPAD传感器报道的最佳数据。

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