The technique of frequency-stabilized comb-calibrated cavity ring-down spectroscopy was used to observe the weak R(1) transition of the deuturated molecular hydrogen (HD) first overtone band in the near infrared. Like molecular hydrogen, HD is a benchmark system to test quantum electrodynamics, looking for new physics beyond the standard model. The spectral line shape was measured with an extremely high fidelity at relatively low gas pressures. The use of a very refined line-shape model allowed us to retrieve the unperturbed line-center frequency of the R(1) line with a global uncertainty of about 100 kHz (δν/ν=5×10-10). Our value may solve the ambiguity that recently emerged for this line from a pair of sub-Doppler experiments. We also det...
Doppler-free transition frequencies for nub{4} and nub{5} hot bands in the band of C$_{2}$H$_{2}$ ...
International audienceWe introduce a comb-calibrated spectrometer for frequency metrology of Raman-a...
Author Institution: Jet Propulsion Laboratory, California Institute of Technology, Pasadena, CA 9110...
Molecular hydrogen has evolved into a benchmark quantum test system for fundamental physics. Accurat...
Because molecular hydrogen is the simplest molecule, it is considered as the best candidate for a di...
Molecular hydrogen is the subject of intensive theoretical and experimental studies because of its r...
Molecular hydrogen has evolved into a benchmark quantum test system as highly accurate measurements ...
International audienceThe first overtone band of HD has been recorded by CW-Cavity Ring Down Spectro...
Frequency combs have revolutionized optical frequency metrology, allowing one to determine highly ac...
International audienceWeak transitions in the (2,0) overtone band of the hydrogen deuteride molecule...
Precise measurements of vibrational transition frequencies in the isotopes of molecular hydrogen can...
A cavity ring-down spectrometer calibrated with a set of precise atomic lines was built to retrieve...
Precise measurements of vibrational transition frequencies in the isotopes of molecular hydrogen can...
The R(1), R(3) and P(3) ro-vibrational transitions in the (2-0) overtone band of the HD molecule are...
We report on rovibrational fine structure spectroscopy of room-temperature trifluoromethane with a s...
Doppler-free transition frequencies for nub{4} and nub{5} hot bands in the band of C$_{2}$H$_{2}$ ...
International audienceWe introduce a comb-calibrated spectrometer for frequency metrology of Raman-a...
Author Institution: Jet Propulsion Laboratory, California Institute of Technology, Pasadena, CA 9110...
Molecular hydrogen has evolved into a benchmark quantum test system for fundamental physics. Accurat...
Because molecular hydrogen is the simplest molecule, it is considered as the best candidate for a di...
Molecular hydrogen is the subject of intensive theoretical and experimental studies because of its r...
Molecular hydrogen has evolved into a benchmark quantum test system as highly accurate measurements ...
International audienceThe first overtone band of HD has been recorded by CW-Cavity Ring Down Spectro...
Frequency combs have revolutionized optical frequency metrology, allowing one to determine highly ac...
International audienceWeak transitions in the (2,0) overtone band of the hydrogen deuteride molecule...
Precise measurements of vibrational transition frequencies in the isotopes of molecular hydrogen can...
A cavity ring-down spectrometer calibrated with a set of precise atomic lines was built to retrieve...
Precise measurements of vibrational transition frequencies in the isotopes of molecular hydrogen can...
The R(1), R(3) and P(3) ro-vibrational transitions in the (2-0) overtone band of the HD molecule are...
We report on rovibrational fine structure spectroscopy of room-temperature trifluoromethane with a s...
Doppler-free transition frequencies for nub{4} and nub{5} hot bands in the band of C$_{2}$H$_{2}$ ...
International audienceWe introduce a comb-calibrated spectrometer for frequency metrology of Raman-a...
Author Institution: Jet Propulsion Laboratory, California Institute of Technology, Pasadena, CA 9110...