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Real-time gas sensing based on optical feedback in a terahertz quantum-cascade laser

机译:太赫兹量子级联激光器中基于光反馈的实时气体传感

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摘要

We report on real-time gas sensing with a terahertz quantum-cascade laser (QCL). The method is solely based on the modulation of the external cavity length, exploiting the intermediate optical feedback regime. While the QCL is operated in continuous-wave mode, optical feedback results in a change of the QCL frequency as well as its terminal voltage. The first effect is exploited to tune the lasing frequency across a molecular absorption line. The second effect is used for the detection of the self-mixing signal. This allows for fast measurement times on the order of 10 ms per spectrum and for real-time measurements of gas concentrations with a rate of 100 Hz. This technique is demonstrated with a mixture of D2O and CH3OD in an absorption cell.
机译:我们报告使用太赫兹量子级联激光器(QCL)进行实时气体传感。该方法仅基于外腔长度的调制,利用了中间光学反馈机制。当QCL以连续波模式运行时,光反馈会导致QCL频率及其端电压发生变化。利用第一个效果来调整分子吸收线上的发射频率。第二种效果用于检测自混合信号。这样可以实现每个频谱10ms量级的快速测量时间,并可以100 Hz的速率实时测量气体浓度。吸收池中D2O和CH3OD的混合物证明了该技术。

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