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Multi-wavelength distributed feedback quantum cascade lasers for broadband trace gas spectroscopy

机译:多波长分布式反馈量子级联激光器,用于宽带痕量气相色谱

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We review the progress of multi-wavelength distributed feedback (DFB) quantum cascade lasers (QCLs) as sources for broadband mid-infrared (mid-IR) spectroscopy. While it is possible to tune the emission wavelength of DFB QCLs in a frequency range of about 5 cm(-1) by varying the operating temperature and driving current, continuous, deterministic and mode-hop free tuning remains challenging. To use these laser sources for broadband spectroscopy applications and to exploit their narrow linewidth, the equalization of the power across the multicolor spectrum is another requirement. Various approaches are reviewed: conventional DFB QCL arrays, surface emitting DFB QCL arrays, on-chip beam combined DFB arrays, multi-channel Vernier-based switching DFBs, and dual-wavelength DFBs. The results are presented to highlight the applicability of these sources for broadband and high-resolution trace gas spectroscopy. The results for multi-species trace-gas spectroscopy using dual-wavelength QCLs are presented in more detail, where the best precision as determined from Allan-Werle plots was obtained for measurement of NH3 with 0.02 parts per billion (ppb) at 100 s integration time, and typical values for the other trace gases of the order of 0.1 ppb. These results indicate that spectrometers using dual-wavelength QCLs can serve as an all-in-one solution for high precision gas spectroscopy.
机译:我们回顾了多波长分布式反馈(DFB)量子级联激光器(QCL)作为宽带中红外(mid-IR)光谱源的进展。尽管可以通过改变工作温度和驱动电流来在大约5 cm(-1)的频率范围内调谐DFB QCL的发射波长,但连续,确定性和无模跳的调谐仍然具有挑战性。为了将这些激光源用于宽带光谱应用并利用其窄的线宽,跨多色光谱的功率均衡是另一个要求。审查了各种方法:常规DFB QCL阵列,表面发射DFB QCL阵列,片上光束组合DFB阵列,多通道基于Vernier的开关DFB和双波长DFB。给出结果以突出这些源在宽带和高分辨率痕量气相色谱中的适用性。详细介绍了使用双波长QCL进行多物种示踪气体光谱分析的结果,其中在100 s积分下,以0.02十亿分之一(ppb)的NH3测量值获得了由Allan-Werle图确定的最佳精度。时间和其他微量气体的典型值,约为0.1 ppb。这些结果表明,使用双波长QCL的光谱仪可以作为高精度气相色谱的一站式解决方案。

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