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Dual-Section DFB-QCLs for Multi-Species Trace Gas Analysis

机译:适用于多种痕量气体分析的双部分DFB-QCL

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We report on the dynamic behavior of dual-wavelength distributed feedback (DFB) quantum cascade lasers (QCLs) in continuous wave and intermittent continuous wave operation. We investigate inherent etaloning effects based on spectrally resolved light-current-voltage (LIV) characterization and perform time-resolved spectral analysis of thermal chirping during long (>5 μs) current pulses. The theoretical aspects of the observed behavior are discussed using a combination of finite element method simulations and transfer matrix method calculations of dual-section DFB structures. Based on these results, we demonstrate how the internal etaloning can be minimized using anti-reflective (AR) coatings. Finally, the potential and benefits of these devices for high precision trace gas analysis are demonstrated using a laser absorption spectroscopic setup. Thereby, the atmospherically highly relevant compounds CO 2 (including its major isotopologues), CO and N 2 O are simultaneously determined with a precision of 0.16 ppm, 0.22 ppb and 0.26 ppb, respectively, using a 1-s integration time and an optical path-length of 36 m. This creates exciting new opportunities in the development of compact, multi-species trace gas analyzers.
机译:我们报告在连续波和间歇连续波操作中双波长分布式反馈(DFB)量子级联激光器(QCLs)的动态行为。我们基于光谱解析的光电流电压(LIV)表征研究固有的标准具效应,并在长(> 5μs)电流脉冲期间执行热chi的时间解析光谱分析。结合有限元方法模拟和双截面DFB结构的传递矩阵方法计算,讨论了观察到的行为的理论方面。根据这些结果,我们演示了如何使用减反射(AR)涂层将内部标准具最小化。最后,使用激光吸收光谱仪演示了这些设备用于高精度痕量气体分析的潜力和优势。因此,使用1-s积分时间和光路分别以0.16 ppm,0.22 ppb和0.26 ppb的精度同时测定与大气高度相关的化合物CO 2(包括其主要的同位素),CO和N 2O。 -36 m的长度。这为紧凑型多物种微量气体分析仪的开发创造了令人兴奋的新机遇。

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