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Broadband 1-GHz mid-infrared frequency comb
Engineering and TechnologyLight: Science & Applications

Broadband 1-GHz mid-infrared frequency comb

N. Hoghooghi, S. Xing, et al.

Discover the groundbreaking broadband mid-infrared frequency comb laser platform developed by Nazanin Hoghooghi and colleagues, achieving 1 GHz repetition and an impressive spectral range from 3 to 13 µm. This innovative technology enhances dual-comb spectroscopy for measuring rapid, non-repetitive events with remarkable precision.... show more
Abstract
Mid-infrared (MIR) spectrometers are invaluable tools for molecular fingerprinting and hyper-spectral imaging. Among the available spectroscopic approaches, GHz MIR dual-comb absorption spectrometers have the potential to simultaneously combine the high-speed, high spectral resolution, and broad optical bandwidth needed to accurately study complex, transient events in chemistry, combustion, and microscopy. However, such a spectrometer has not yet been demonstrated due to the lack of GHz MIR frequency combs with broad and full spectral coverage. Here, we introduce the first broadband MIR frequency comb laser platform at 1 GHz repetition rate that achieves spectral coverage from 3 to 13 µm. This frequency comb is based on a commercially available 1.56 µm mode-locked laser, robust all-fiber Er amplifiers and intra-pulse difference frequency generation (IP-DFG) of few-cycle pulses in χ(2) nonlinear crystals. When used in a dual comb spectroscopy (DCS) configuration, this source will simultaneously enable measurements with µs time resolution, 1 GHz (0.03 cm−1) spectral point spacing and a full bandwidth of >5 THz (>166 cm−1) anywhere within the MIR atmospheric windows. This represents a unique spectroscopic resource for characterizing fast and non-repetitive events that are currently inaccessible with other sources.
Publisher
Light: Science & Applications
Published On
Jan 31, 2022
Authors
Nazanin Hoghooghi, Sida Xing, Peter Chang, Daniel Lesko, Alexander Lind, Greg Rieker, Scott Diddams
Tags
mid-infraredfrequency comb laserdual-comb spectroscopynonlinear crystalsspectral coverage
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