Yoon Yohan, Kendziora Christopher A, Furstenberg Robert, Breshike Christopher J, Jeon Seokmin, Balow Robert B, McGill R Andrew
Opt Express. 2019 Oct 28;27(22):32609-32620. doi: 10.1364/OE.27.032609.
We report the time resolved characterization of Fabry-Perot quantum cascade lasers (FP-QCLs). We are developing a custom-built broadband laser source in the Mid-LWIR range by combining several high power FP-QCLs for a single snap shot application. This white light source would enable not only stand-off detection applications in a single snapshot but also new data collection modalities such as live, real-time chemical imaging, requiring extremely rapid measurements. In this study, the two FP-QCLs were operated in CW and pulsed modes with varying applied currents and diode temperatures to optimize the best laser operation condition to cover a broad spectral range including spectral features for the analytes of interest. To understand mode behavior of the FP-QCLs in a short period of time, the spectral output for each test condition was temporally resolved. Under most of the conditions, FP mode hopping was observed during the time evolution through the pulse length (3000 ns). Based on the time-resolved spectra, the ideal spectral characteristics for a single snap shot application are discussed, with respect to a broad spectral bandwidth, a flat-top power profile, and high spectral power density.
我们报告了法布里 - 珀罗量子级联激光器(FP - QCL)的时间分辨特性。我们正在通过组合多个高功率FP - QCL来开发一种定制的中长波红外(Mid - LWIR)范围内的宽带激光源,用于单次快照应用。这种白光源不仅能够在单次快照中实现远距离探测应用,还能实现新的数据收集模式,如实时化学成像,这需要极其快速的测量。在本研究中,两个FP - QCL以连续波(CW)和脉冲模式运行,改变施加电流和二极管温度,以优化最佳激光运行条件,从而覆盖包括感兴趣分析物光谱特征在内的宽光谱范围。为了在短时间内了解FP - QCL的模式行为,对每个测试条件下的光谱输出进行了时间分辨。在大多数条件下,在通过脉冲长度(3000 ns)的时间演化过程中观察到了FP模式跳变。基于时间分辨光谱,讨论了单次快照应用的理想光谱特性,包括宽光谱带宽、平顶功率分布和高光谱功率密度。