Mid-infrared multiheterodyne spectroscopy with phase-locked quantum cascade lasers

被引:41
|
作者
Westberg, J. [1 ]
Sterczewski, L. A. [1 ,2 ]
Wysocki, G. [1 ]
机构
[1] Princeton Univ, Dept Elect Engn, Princeton, NJ 08544 USA
[2] Wroclaw Univ Sci & Technol, Fac Elect, PL-50370 Wroclaw, Poland
关键词
DUAL-COMB SPECTROSCOPY; FREQUENCY-COMB; FOURIER-TRANSFORM; SPECTROMETER; NOISE;
D O I
10.1063/1.4979825
中图分类号
O59 [应用物理学];
学科分类号
摘要
Fabry-Perot (FP) quantum cascade lasers (QCLs) provide purely electronically controlled monolithic sources for broadband mid-infrared (mid-IR) multiheterodyne spectroscopy (MHS), which benefits from the large gain bandwidth of the QCLs without sacrificing the narrowband properties commonly associated with the single mode distributed feedback variant. We demonstrate a FP-QCL based multiheterodyne spectrometer with a short-term noise-equivalent absorption of similar to 3 x 10(-4)/root Hz , a mid-IR spectral coverage of 25 cm(-1), and very short acquisition time (10 mu s) capability. The broadband potential is demonstrated by measuring the absorption spectra of ammonia and isobutane under atmospheric pressure conditions. The stability of the system is enhanced by a two-stage active frequency inter-locking procedure, where the two QCLs are pre-locked with a slow feedback loop based on an analog frequency discriminator, followed by a high bandwidth optical phase-locked loop. The locking system provides a relative frequency stability in the sub kHz range over seconds of integration time. The strength of the technique lies in the ability to acquire spectral information from all optical modes simultaneously and individually, which bodes for a versatile and cost effective spectrometer for mid-IR chemical gas sensing. Published by AIP Publishing.
引用
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页数:5
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