Optics Express · 2021 · 22 citations · 39 references
A multi-frequency differential absorption lidar incorporating a tunable laser and an optical frequency comb is demonstrated for precise spectrum analysis of atmospheric gas. The single frequency tunable laser is stabilized by locking to the optical frequency comb, with a standard deviation of 0.5 MHz. To achieve a high signal-to-noise ratio, a multi-mode superconducting nanowire single-photon detector with an active-area diameter of 50 µm, a quantum efficiency of 31.5%, and dark noise of 100 counts per second is implemented, which enables to avoid the need for high energy lasers. In the experiment, the range-resolved spectrum of atmospheric mixture gases (CO<sub>2</sub> and HDO) in a region of 1572.2 - 1572.45 nm is obtained. Results show different partially overlapped absorption of two gases in different seasons, with a stronger influence of HDO on CO<sub>2</sub> in summer than in winter. The interactions are taken into account by separating the mixture absorption spectrum (one CO<sub>2</sub> line and two HDO lines) with triple-peak Voigt fitting. The retrieved concentrations over 6 km with a range resolution of 120 m and a time resolution of 10 min are compared with in-situ sensors. The uncertainties of the retrieved concentrations are as low as 6.5 µmol/mol (ppm) and 1×10<sup>-3</sup> g/kg for CO<sub>2</sub> and HDO, respectively.
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The HITRAN2016 molecular spectroscopic database
Iouli E. Gordon, Laurence S. Rothman, C. Hill et al. · Journal of Quantitative Spectroscopy and Radiative Transfer · 2017 · 7.9K citations · Full text
Trends in the sources and sinks of carbon dioxide
Corinne Le Quéré, Michael Raupach, Josep G. Canadell et al. · Nature Geoscience · 2009 · 2.2K citations · Full text
Thomas R. Karl, Kevin E. Trenberth · Science · 2003 · 2K citations
Ian Coddington, Nathan R. Newbury, William C. Swann · Optica · 2016 · 1.6K citations · Full text
Frequency Metrology, Molecular Spectroscopy, Engineering +13