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A space- and time-resolved single photon counting detector for fluorescence microscopy and spectroscopy

机译:一种空间和时间分辨的单光子计数检测器用于荧光显微镜和光谱学

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摘要

We have recently developed a wide-field photon-counting detector having high-temporal and high-spatial resolutions and capable of high-throughput (the H33D detector). Its design is based on a 25 mm diameter multi-alkali photocathode producing one photo electron per detected photon, which are then multiplied up to 107 times by a 3-microchannel plate stack. The resulting electron cloud is proximity focused on a cross delay line anode, which allows determining the incident photon position with high accuracy. The imaging and fluorescence lifetime measurement performances of the H33D detector installed on a standard epifluorescence microscope will be presented. We compare them to those of standard single-molecule detectors such as single-photon avalanche photodiode (SPAD) or electron-multiplying camera using model samples (fluorescent beads, quantum dots and live cells). Finally, we discuss the design and applications of future generation of H33D detectors for single-molecule imaging and high-throughput study of biomolecular interactions.
机译:我们最近开发了一种具有高时间和高空间分辨率并具有高通量的宽视野光子计数检测器(H33D检测器)。其设计基于直径为25毫米的多碱性光电阴极,每个检测到的光子产生一个光电子,然后通过3个微通道板堆叠将其乘以10 7 倍。产生的电子云接近聚焦在交叉延迟线阳极上,从而可以高精度确定入射光子位置。将介绍安装在标准落射荧光显微镜上的H33D检测器的成像和荧光寿命测量性能。我们将它们与使用模型样本(荧光珠,量子点和活细胞)的标准单分子检测器(如单光子雪崩光电二极管(SPAD)或电子倍增相机)的检测器进行比较。最后,我们讨论了用于单分子成像和生物分子相互作用的高通量研究的下一代H33D检测器的设计和应用。

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