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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
Main Author: 高冬阳 夏茂鹏 李健军 胡友勃 郑小兵
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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.
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1995-8188
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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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