Demonstration and frequency noise characterization of a 17 $μ$m quantum cascade laser

Fuente: arXiv
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Auteurs principaux: Manceau, M, Wall, T E, Philip, H, Baranov, A N, Lopez, Olivier, Tarbutt, M R, Teissier, R, Darquié, B
Format: Preprint
Publié: 2023
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author Manceau, M
Wall, T E
Philip, H
Baranov, A N
Lopez, Olivier
Tarbutt, M R
Teissier, R
Darquié, B
author_facet Manceau, M
Wall, T E
Philip, H
Baranov, A N
Lopez, Olivier
Tarbutt, M R
Teissier, R
Darquié, B
contents We evaluate the spectral performance of a novel continuous-wave room-temperature distributed feedback quantum cascade laser operating at the long wavelength of 17 $μ$m. By demonstrating broadband laser absorption spectroscopy of the $ν$2 fundamental vibrational mode of N2O molecules, we have determined the spectral range and established the spectroscopic potential of this laser. We have characterized the frequency noise and measured the line width of this new device, uncovering a discrepancy with the current consensus on the theoretical modeling of quantum cascade lasers. Our results confirm the potential of such novel narrow-line-width sources for vibrational spectroscopy. Extending laser spectroscopy to longer wavelength is a fascinating prospect that paves the way for a wide range of opportunities from chemical detection, to frequency metrology as well as for exploring light-matter interaction with an extended variety of molecules, from ultra-cold diatomic species to increasingly complex molecular systems.
format Preprint
id arxiv_https___arxiv_org_abs_2310_16460
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Demonstration and frequency noise characterization of a 17 $μ$m quantum cascade laser
Manceau, M
Wall, T E
Philip, H
Baranov, A N
Lopez, Olivier
Tarbutt, M R
Teissier, R
Darquié, B
Atomic Physics
Instrumentation and Detectors
Optics
We evaluate the spectral performance of a novel continuous-wave room-temperature distributed feedback quantum cascade laser operating at the long wavelength of 17 $μ$m. By demonstrating broadband laser absorption spectroscopy of the $ν$2 fundamental vibrational mode of N2O molecules, we have determined the spectral range and established the spectroscopic potential of this laser. We have characterized the frequency noise and measured the line width of this new device, uncovering a discrepancy with the current consensus on the theoretical modeling of quantum cascade lasers. Our results confirm the potential of such novel narrow-line-width sources for vibrational spectroscopy. Extending laser spectroscopy to longer wavelength is a fascinating prospect that paves the way for a wide range of opportunities from chemical detection, to frequency metrology as well as for exploring light-matter interaction with an extended variety of molecules, from ultra-cold diatomic species to increasingly complex molecular systems.
title Demonstration and frequency noise characterization of a 17 $μ$m quantum cascade laser
topic Atomic Physics
Instrumentation and Detectors
Optics
url https://arxiv.org/abs/2310.16460