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Doppler-Free Two-Photon Cavity Ring-Down Spectroscopy of a Nitrous Oxide (N$_2$O) Vibrational Overtone Transition
Published 27 Mar 2020 in physics.chem-ph, physics.ins-det, and physics.optics | (2003.12624v1)
Abstract: We report Doppler-free two-photon absorption of N$2$O at $\lambda$ = 4.53 $\mu$m, measured by cavity ring-down spectroscopy. High power was achieved by optical self-locking of a quantum cascade laser to a linear resonator of finesse $F$ = 22730, and accurate laser detuning over a 400 MHz range was measured relative to an optical frequency comb. At a sample pressure of p = 0.13 kPa, we report a large two-photon cross-section of $\sigma{13}{(2)}$ = 8.0 $\times$ 10${-41}$ cm$4$ s molecule${-1}$ for the $Q$(18) rovibrational transition at a resonant frequency of $\nu_0$ = 66179400.8 MHz.
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