arXiv · 2212.13506
Rovibrational Polaritons in Gas-Phase Methane
Abstract
Polaritonic states arise when a bright optical transition of a molecular ensemble is resonantly matched to an optical cavity mode frequency. Here, we lay the groundwork to study the behavior of polaritons in clean, isolated systems by establishing a new platform for vibrational strong coupling in gas-phase molecules. We access the strong coupling regime in an intracavity cryogenic buffer gas cell optimized for the preparation of simultaneously cold and dense ensembles, and report a proof-of-principle demonstration in gas-phase methane. We strongly cavity-couple individual rovibrational transitions and probe a range of coupling strengths and detunings. We reproduce our findings with classical cavity transmission simulations in the presence of strong intracavity absorbers. This infrastructure provides a new testbed for benchmark studies of cavity-altered chemistry.
Explore related subjects
Keep this discovery
Adam D. Wright, Jane C. Nelson, Marissa L. Weichman. 2022-12-27. Rovibrational Polaritons in Gas-Phase Methane. https://doi.org/10.1021/jacs.3c00126
Cite the original work for its findings. Save a collection to share your selection of sources.