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Dual Path Lock-In System for Elimination of Residual Amplitude Modulation and SNR Enhancement in Photoacoustic Spectroscopy

机译:双路径锁定系统可消除光声光谱中的残余振幅调制和SNR增强

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摘要

A technique for elimination of residual amplitude modulation (ERAM) in photoacoustic spectroscopy based on dual path lock-in was proposed and experimentally demonstrated. There are two lock-in amplifiers, one is for gas concentration demodulation and another for residual amplitude modulation (RAM) measurement by tuning the reference signal in different phases, and then a dual path lock-in technique based on subtraction is applied to RAM removal, improving the second harmonic profile significantly. In this system, the signal to noise ratio (SNR) increases about two times based on our dual path lock-in technique compared to one distributed feedback laser diode (DFB-LD). The system achieved a good linear response (R-square = 0.99887) in a concentration range from 100 ppmv to 2400 ppmv and a minimum detection limit (MDL) of 1.47 ppmv.
机译:提出了一种基于双路径锁定的消除光声光谱中残余振幅调制(ERAM)的技术,并进行了实验验证。锁定放大器有两个,一个用于气体浓度解调,另一个用于通过在不同相位上调整参考信号来测量残余振幅调制(RAM),然后将基于减法的双路径锁定技术应用于RAM去除,大大改善了二次谐波分布。在此系统中,基于我们的双路径锁定技术,与一个分布式反馈激光二极管(DFB-LD)相比,信噪比(SNR)大约增加了两倍。该系统在100 ppmv至2400 ppmv的浓度范围和1.47 ppmv的最小检测限(MDL)范围内实现了良好的线性响应(R平方= 0.99887)。

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