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Absolute Quantum Efficiency Calibration of Analog Detectors with Twin Photon Current
Correlated photon is exploited as a tool for absolute quantum efficiency calibration of photon detectors working in the photon-counting regime. We extend the method from photon-counting regime to the absolute calibration of analog regime photon detectors. A revised calibration module is proposed bas...
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Published in: | Shanghai jiao tong da xue xue bao 2017-08, Vol.22 (4), p.411-416 |
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container_title | Shanghai jiao tong da xue xue bao |
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creator | 高冬阳 夏茂鹏 李健军 胡友勃 郑小兵 |
description | Correlated photon is exploited as a tool for absolute quantum efficiency calibration of photon detectors working in the photon-counting regime. We extend the method from photon-counting regime to the absolute calibration of analog regime photon detectors. A revised calibration module is proposed based on balance detection and fluctuation restrictions conditions applied to analog photon detectors. An absolute calibration experimental system is established. This method shows a relative standard uncertainty of 2.1% and a relative deviation of 1% compared with those of the typical photomultiplier quantum efficiency. |
doi_str_mv | 10.1007/s12204-017-1855-z |
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source | Springer Nature |
subjects | Architecture Calibration Computer Science Detectors Efficiency Electrical Engineering Engineering Life Sciences Materials Science Photomultiplier tubes Photomultipliers Quantum efficiency Sensors Variations |
title | Absolute Quantum Efficiency Calibration of Analog Detectors with Twin Photon Current |
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