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Improvement of the detection efficiency calibration and homogeneity measurement of Si-SPAD detectors

机译:改进Si-SPAD检测器的检测效率校准和同质性测量

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摘要

BackgroundSilicon single-photon avalanche diodes (Si-SPADs) are the most used devices for measuring ultra-weak optical radiant fluxes in many quantum technology fields, such as quantum optics, quantum communication, quantum computing, etc. In all these fields, the detection efficiency is the main parameter, which has to be accurately known for achieving reliable measurements. In this paper we present the improvements performed on the setup described in López et al. (J Mod Opt 62:S21–S27, ) for determining the detection efficiency of Si-SPAD detectors with a low measurement uncertainty. The improvement arises from the precise alignment of the Si-SPAD detector and the low deviation reached between the total calculated filter transmission and the individual filter transmission measurements (≤0.05%) performed with an integrating sphere with attached Si-photodiode as standard detector.
机译:背景技术硅单光子雪崩二极管(Si-SPAD)是在许多量子技术领域(例如量子光学,量子通信,量子计算等)中用于测量超弱光辐射通量的最常用的设备。在所有这些领域中,检测效率是主要参数,必须准确知道它才能实现可靠的测量。在本文中,我们介绍了对López等人所述的设置所做的改进。 (J Mod Opt 62:S21-S27,)用于确定测量不确定度低的Si-SPAD检测器的检测效率。改进源于Si-SPAD检测器的精确对准,以及在总的计算出的滤光片透射率和使用附有Si-光电二极管作为标准检测器的积分球进行的单个滤光片透射率测量值之间的低偏差(≤0.05%)。

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