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High-Sensitivity High-Resolution Optical Phase Shift Detection Technique Using a Si Photodiode Operating in Photovoltaic Mode

机译:使用在光伏模式下工作的Si光电二极管的高灵敏度,高分辨率光学相移检测技术

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In this paper, we report the optimization of the operating conditions and the maximization of the performances of the phase shift detection technique allowing to approach the best sensitivity and resolution in terms of light power variations. The system is based on the synchronous demodulation technique and uses a Si photodiode operating in photovoltaic mode biased through a small amplitude sinusoidal modulating signal. Employing a commercial lock-in amplifier for phase measurements and varying the signal modulating frequency, we prove that it is possible to obtain the maximum theoretical phase shift variation range equal to 90° with a resulting sensitivity and resolution equal to 3100°/ and 3 pW, respectively. We demonstrate that these results are more than two orders of magnitude greater than those ones achievable by employing a Si photodiode in photoconductive mode. As a case-example for chemical applications, we apply the proposed technique to detect the variations of the molar concentration of a methylene blue solution by measuring the variations of the transmittance of a laser beam passing through the substance. The experimental findings are compared with those ones achieved by using a commercial spectrophotometer and the conventional amplitude detection technique employing the lock-in amplifier. Despite the achieved results are limited by the fixed phase resolution of the employed lock-in amplifier, here, the proposed approach allows to measure molar concentration variations with a resolution of 79 pM resulting 1354 times higher than that one obtained using the spectrophotometer and 33 times better than the value achieved with the amplitude detection technique.
机译:在本文中,我们报告了工作条件的优化和相移检测技术性能的最大化,从而可以根据光功率变化来接近最佳灵敏度和分辨率。该系统基于同步解调技术,并使用通过小幅度正弦调制信号偏置的光伏模式下工作的Si光电二极管。通过使用商用锁相放大器进行相位测量并改变信号调制频率,我们证明有可能获得等于90°的最大理论相移变化范围,其灵敏度和分辨率分别为3100°/和3 pW , 分别。我们证明,这些结果比在光电导模式下采用Si光电二极管可获得的结果大两个数量级。以化学应用为例,我们通过测量穿过物质的激光束的透射率变化,来应用所提出的技术来检测亚甲基蓝溶液摩尔浓度的变化。将实验结果与使用商用分光光度计和采用锁定放大器的常规幅度检测技术所获得的结果进行比较。尽管所获得的结果受到所使用的锁定放大器的固定相位分辨率的限制,但是在此,所提出的方法仍允许以79 pM的分辨率测量摩尔浓度变化,从而比使用分光光度计获得的分辨率高1354倍和33倍。比幅度检测技术获得的值更好。

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