Cavity ringdown (CRD) spectroscopy is extended for the first time from its conventional optical-absorption mode of operation into the regime of coherent Raman spectroscopy. Continuous-wave (cw) stimulated Raman gain (SRG) spectra of the 2916.5-cm⁻¹ ν₁ rovibrational fundamental Raman band of methane (CH₄) gas are measured, using tunable cw laser light at ~1544 nm to probe ringdown decay from a rapidly swept optical cavity that is itself inside the cavity of a cw single-longitudinal-mode Nd:YAG ring laser operating at ~1064.5 nm. The resulting change of ringdown decay rate is dependent on pump laser irradiance and is associated with Raman gain. Remarkably, such SRG-CRD resonances display ringdown times that are longer than in the off-resonanc...
We report on improvements made on our previously introduced technique of cavity-enhanced Raman spect...
Author Institution: Universit\'{e} J. Fourier/CNRS Grenoble Laboratoire de Spectrom\'{e}trie Physiqu...
Author Institution: Department of Chemistry, Princeton UniversityWe are developing a technique to me...
Cavity ringdown (CRD) spectroscopy is extended for the first time from its conventional optical-abso...
Cavity ringdown (CRD) spectroscopy, with its high sensitivity, provides a novel way to perform conti...
A novel form of high-resolution continuous-wave laser spectroscopy employs a cavity-ringdown techniq...
We report a novel form of high-resolution coherent-Raman spectroscopy which detects stimulated Raman...
Continuous-wave (cw) cavity-ringdown (CRD) spectroscopy provides a highly sensitive way to measure o...
Cavity ringdown (CRD) absorption spectroscopy with continuous-wave (cw) tunable coherent light sourc...
Spectroscopic sensing of gases can be performed with high sensitivity and photometric precision by c...
Cavity ringdown (CRD) absorption spectroscopy provides high sensitivity and photometric precision in...
Cavity ringdown (CRD) absorption spectroscopy enables spectroscopic sensing of gases with a high sen...
.A relatively simple technique for characterizing an all-resonant intracavity continuous-wave (CW) s...
Cavity ring-down (CRD) spectroscopy is a direct absorption technique, which can be performed with pu...
Some of the most sensitive absorption measurements to date are based on schemes that use a resonant ...
We report on improvements made on our previously introduced technique of cavity-enhanced Raman spect...
Author Institution: Universit\'{e} J. Fourier/CNRS Grenoble Laboratoire de Spectrom\'{e}trie Physiqu...
Author Institution: Department of Chemistry, Princeton UniversityWe are developing a technique to me...
Cavity ringdown (CRD) spectroscopy is extended for the first time from its conventional optical-abso...
Cavity ringdown (CRD) spectroscopy, with its high sensitivity, provides a novel way to perform conti...
A novel form of high-resolution continuous-wave laser spectroscopy employs a cavity-ringdown techniq...
We report a novel form of high-resolution coherent-Raman spectroscopy which detects stimulated Raman...
Continuous-wave (cw) cavity-ringdown (CRD) spectroscopy provides a highly sensitive way to measure o...
Cavity ringdown (CRD) absorption spectroscopy with continuous-wave (cw) tunable coherent light sourc...
Spectroscopic sensing of gases can be performed with high sensitivity and photometric precision by c...
Cavity ringdown (CRD) absorption spectroscopy provides high sensitivity and photometric precision in...
Cavity ringdown (CRD) absorption spectroscopy enables spectroscopic sensing of gases with a high sen...
.A relatively simple technique for characterizing an all-resonant intracavity continuous-wave (CW) s...
Cavity ring-down (CRD) spectroscopy is a direct absorption technique, which can be performed with pu...
Some of the most sensitive absorption measurements to date are based on schemes that use a resonant ...
We report on improvements made on our previously introduced technique of cavity-enhanced Raman spect...
Author Institution: Universit\'{e} J. Fourier/CNRS Grenoble Laboratoire de Spectrom\'{e}trie Physiqu...
Author Institution: Department of Chemistry, Princeton UniversityWe are developing a technique to me...