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Mid-infrared dual-comb spectroscopy with low drive-power on-chip sources

Authors :
Sterczewski, Lukasz A.
Westberg, Jonas
Bagheri, Mahmood
Frez, Clifford
Vurgaftman, Igor
Canedy, Chadwick L.
Bewley, William W.
Merritt, Charles D.
Kim, Chul Soo
Kim, Mijin
Meyer, Jerry R.
Wysocki, Gerard
Publication Year :
2018

Abstract

Two semiconductor optical frequency combs consuming less than 1 W of electrical power are used to demonstrate high-sensitivity mid-infrared dual-comb spectroscopy in the important 3-4 $\mu$m spectral region. The devices are 4 millimeters long by 4 microns wide, and each emits 8 mW of average optical power. The spectroscopic sensing performance is demonstrated by measurements of methane and hydrogen chloride with a spectral coverage of 33 cm$^{-1}$ (1 THz), 0.32 cm$^{-1}$ (9.7 GHz) frequency sampling interval, and peak signal-to-noise ratio of ~100 at 100 $\mu$s integration time. The monolithic design, low drive power, and direct generation of mid-infrared radiation are highly attractive for portable broadband spectroscopic instrumentation in future terrestrial and space applications.

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.1812.11175
Document Type :
Working Paper