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首页> 外文期刊>Electronics Letters >Very high-sensitivity tunable phase detection of light power variations using electrical modulation of Si-photodiode in photovoltaic regime
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Very high-sensitivity tunable phase detection of light power variations using electrical modulation of Si-photodiode in photovoltaic regime

机译:在光伏状态下使用Si光电二极管的电调制对光功率变化进行非常高灵敏度的可调相位检测

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摘要

The use of a silicon (Si)-photodiode (Si-PD) operating in photovoltaic mode as a tunable very high-sensitivity phase detector of light power variations is demonstrated. This result is reached by applying to the Si-PD an electrical modulation through an AC excitation signal without a DC reverse bias. This allows employing the synchronous demodulation technique for phase detection that shows much better performances with respect to the conventional amplitude measurements, mainly overcoming the issues related to the electrical noise and the resolution limitation due to the selected full scale. The phase variations to be detected occur between the modulating signal and the one provided by the Si-PD as a function of the light power variations on its sensitive area. The proposed approach notably simplifies both the electronic circuitry and the optical setup, minimising the detection system complexity and size. Experimental results demonstrate that it is possible to achieve phase detection sensitivity, with respect to light power variations, of up to 410°/μW as a function of the Si-PD settable operating conditions. Using a standard commercial lock-in amplifier with a 0.01° phase resolution is possible to obtain a light power resolution of up to 25 pW.
机译:演示了以光伏模式运行的硅(Si)-光电二极管(Si-PD)作为光功率变化的可调式非常高灵敏度的相位检测器的用途。通过在没有直流反向偏置的情况下通过交流激励信号将电调制应用于Si-PD,可以达到此结果。这允许采用用于相位检测的同步解调技术,该技术相对于传统的幅度测量具有更好的性能,主要克服了由于选定的满量程而引起的与电噪声和分辨率限制有关的问题。根据调制光信号在其敏感区域上的光功率变化,将在调制信号与由Si-PD提供的相位信号之间发生要检测的相位变化。所提出的方法显着简化了电子电路和光学设置,从而将检测系统的复杂性和尺寸最小化。实验结果表明,根据Si-PD可设置的工作条件,相对于光功率变化,可以实现高达410°/μW的相位检测灵敏度。使用具有0.01°相位分辨率的标准商用锁相放大器,可以获得高达25 pW的光功率分辨率。

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