Extending frequency metrology to increasingly complex molecules: SI-traceable sub-Doppler mid-IR spectroscopy of trioxane

Fuente: arXiv
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Autori principali: Tran, Dang Bao An, Manceau, Mathieu, Lopez, Olivier, Goncharov, Andrey, Amy-Klein, Anne, Darquié, Benoît
Natura: Preprint
Pubblicazione: 2025
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author Tran, Dang Bao An
Manceau, Mathieu
Lopez, Olivier
Goncharov, Andrey
Amy-Klein, Anne
Darquié, Benoît
author_facet Tran, Dang Bao An
Manceau, Mathieu
Lopez, Olivier
Goncharov, Andrey
Amy-Klein, Anne
Darquié, Benoît
contents Bringing increasingly complex polyatomic molecules within reach of precision measurement experiments offers fascinating and far-reaching prospects ranging from Earth sciences and astrophysics, to metrology and quantum sciences. Here, we demonstrate sub-Doppler spectroscopic measurements in the mid-IR fingerprint region of, to our knowledge, the largest molecule to date. To this end, we use a high-resolution ~10.3 $μ$m spectrometer based on a sub-Hz quantum cascade laser remotely calibrated against state-of-the-art primary frequency standards via a metrology-grade fibre link. We perform saturated absorption spectroscopy in the v5 CO stretching mode of 1,3,5-trioxane, (H2CO)3, at a resolution of ~100 kHz, allowing us to measure the absolute frequency of hundreds of rovibrational transitions at unprecedented uncertainties for such a complex species, as low as ~5 kHz. Our work demonstrates the extension of frequency metrology methodologies to ever larger molecular system, confirming the potential of the technologies we develop for bringing increasingly complex species within reach of ultra-precise measurement experiments.
format Preprint
id arxiv_https___arxiv_org_abs_2502_08201
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Extending frequency metrology to increasingly complex molecules: SI-traceable sub-Doppler mid-IR spectroscopy of trioxane
Tran, Dang Bao An
Manceau, Mathieu
Lopez, Olivier
Goncharov, Andrey
Amy-Klein, Anne
Darquié, Benoît
Atomic Physics
Instrumentation and Detectors
Optics
Bringing increasingly complex polyatomic molecules within reach of precision measurement experiments offers fascinating and far-reaching prospects ranging from Earth sciences and astrophysics, to metrology and quantum sciences. Here, we demonstrate sub-Doppler spectroscopic measurements in the mid-IR fingerprint region of, to our knowledge, the largest molecule to date. To this end, we use a high-resolution ~10.3 $μ$m spectrometer based on a sub-Hz quantum cascade laser remotely calibrated against state-of-the-art primary frequency standards via a metrology-grade fibre link. We perform saturated absorption spectroscopy in the v5 CO stretching mode of 1,3,5-trioxane, (H2CO)3, at a resolution of ~100 kHz, allowing us to measure the absolute frequency of hundreds of rovibrational transitions at unprecedented uncertainties for such a complex species, as low as ~5 kHz. Our work demonstrates the extension of frequency metrology methodologies to ever larger molecular system, confirming the potential of the technologies we develop for bringing increasingly complex species within reach of ultra-precise measurement experiments.
title Extending frequency metrology to increasingly complex molecules: SI-traceable sub-Doppler mid-IR spectroscopy of trioxane
topic Atomic Physics
Instrumentation and Detectors
Optics
url https://arxiv.org/abs/2502.08201