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外差相位敏感色散光谱学的理论和实验研究与注入电流调制的量子级联激光器。

Theoretical and Experimental Study of Heterodyne Phase-Sensitive Dispersion Spectroscopy with an Injection-Current-Modulated Quantum Cascade Laser.

机构信息

Department of Mechanical and Automation Engineering, The Chinese University of Hong Kong, New Territories, Hong Kong SAR, China.

Shenzhen Research Institute, The Chinese University of Hong Kong, New Territories, Hong Kong SAR, China.

出版信息

Sensors (Basel). 2020 Oct 29;20(21):6176. doi: 10.3390/s20216176.

Abstract

We report the theoretical and experimental study of calibration-free heterodyne phase-sensitive dispersion spectroscopy (HPSDS) in the mid-infrared using a direct current modulated mid-infrared quantum cascade laser (QCL). The modulation of QCL current at several hundred MHz or higher generates the synchronous frequency and intensity modulation of the QCL emission. An analytical model of the phase of the beat note signal in HPSDS is derived by considering the absorption and dispersion processes and incorporating the QCL modulation parameters. In the experiment, a 4.5 μm QCL modulated at 350 MHz was used to measure NO at 200 Torr in a 10 cm gas cell. The NO concentrations inferred from the analytical model were compared with the nominal values to show good agreement over the concentration range of 189-805 ppm with a standard deviation <3%. When the QCL wavelength was locked at the line-center of the molecular transition, it was of interest to find that the theoretical model was simplified to that used for near-infrared HPSDS with an electro-optical modulator for laser modulation.

摘要

我们报告了使用直流调制中红外量子级联激光器(QCL)的无校准外差相位敏感色散光谱(HPSDS)的理论和实验研究。QCL 电流在几百 MHz 或更高的调制会产生 QCL 发射的同步频率和强度调制。通过考虑吸收和色散过程并结合 QCL 调制参数,推导出 HPSDS 中拍频信号相位的分析模型。在实验中,使用调制频率为 350 MHz 的 4.5 μm QCL 在 10 cm 气室中测量 200 Torr 下的 NO。将从分析模型推断出的 NO 浓度与标称值进行比较,结果表明在 189-805 ppm 的浓度范围内具有很好的一致性,标准偏差<3%。当 QCL 波长锁定在分子跃迁的线中心时,有趣的是发现理论模型简化为使用电光调制器对激光进行调制的近红外 HPSDS。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b532/7662406/c7d0fe00e65f/sensors-20-06176-g001.jpg

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