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Calibration-free WMS using a cw-DFB-QCL, a VCSEL, and an edge-emitting DFB laser with in-situ real-time laser parameter characterization

机译:使用cw-DFB-QCL,VCSEL和边缘发射DFB激光器的无标定WMS,具有现场实时激光参数表征

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摘要

This paper presents a detailed experimental wavelength modulation spectroscopy approach and demonstrates its applicability to various types of semiconductor lasers in the near infrared and mid-infrared. A 5250 nm continuous-wave distributed feedback quantum cascade laser, a 2004 nm vertical cavity surface emitting laser, and a 1650 nm distributed feedback edge-emitting laser are used to extract the concentration and pressure values of nitric oxide, carbon dioxide, and methane, respectively, using the 2f wavelength modulation spectroscopy (WMS) technique under controlled conditions. The generality of the technique is demonstrated by extending it to 3f WMS for the three different kinds of lasers used in this study. The methodology required to provide in-situ real-time measurements of both gas parameters and operating characteristics of the laser are described in detail. Finally, the advantages and limitations of the technique are discussed in view of the fact that the characteristic behavior of the laser sources is significantly different. We specifically discuss the issue of targeting non-absorbing wavelength regions and the choice of modulation frequency and modulation amplitude of the laser, as well as the choice of the detection harmonic.
机译:本文介绍了一种详细的实验波长调制光谱方法,并证明了其在近红外和中红外中对各种类型的半导体激光器的适用性。使用5250 nm连续波分布反馈量子级联激光器,2004 nm垂直腔表面发射激光器和1650 nm分布反馈边发射激光器来提取一氧化氮,二氧化碳和甲烷的浓度和压力值,在受控条件下分别使用2f波长调制光谱(WMS)技术。通过将这项技术扩展到本研究中使用的三种不同类型的激光器的3f WMS,可以证明该技术的普遍性。详细描述了提供气体参数和激光器工作特性的实时测量所需的方法。最后,鉴于激光源的特征行为明显不同这一事实,讨论了该技术的优点和局限性。我们专门讨论针对非吸收波长区域的问题以及激光器的调制频率和调制幅度的选择,以及检测谐波的选择。

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