期刊文献+

基于相关光子定标光电探测器量子效率的基本模型

Various Scheme of Absolute Calibration of Photoelectric Detectors Based on Correlated Photons
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摘要 相关光子是由强激光泵浦非线性晶体的自发参量下转换效应产生的。从两方面阐述了对探测器量子效率的定标,包括光子计数型探测器和模拟探测器。针对每一方面详细地介绍了目前主流的定标方案,并给出了详细的理论表达式及实验方案。根据理论分析其优点及缺点,并与传统的定标方法进行比较。重点对模拟探测器量子效率的定标在不同方案下的应用范围及表达式进行归纳,总结了探测器定标的最新进展,分析了这些方法的基本思想。提出下一步研究方向及可实现的方法,展望该领域的发展前景。 Correlated photons are generated by the spontaneous parametric down-conversion (SPDC) effects of nonlinear crystal pumped by highly intense laser. Two different quantum efficiency calibration methods of analog detectors and photon-counting regime are presented, including the theoretical expression, experimental plan, the advantages and disadvantages when compared with traditional methods. The application range and expression of the quantum efficiency of analog detectors in different calibration methods, as well as the last advances in photoelectric detectors calibration field and fundamental ideas are summarized. The next direction of investigation and the method of realization are mentioned. The future of this field is also viewed
出处 《大气与环境光学学报》 CAS 2014年第2期121-130,共10页 Journal of Atmospheric and Environmental Optics
基金 国防技术基础项目(J312013A0001) 国家自然科学基金项目(11204318)资助
关键词 相关光子 模拟探测器 光子计数型探测器 量子效率 绝对定标 correlated photons analog detectors photon-counting detectors the quantum efficiency the absolute calibration
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参考文献23

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