We discuss layout and performance of a high-resolution Stimulated Raman Loss spectrometer that has been newly developed for accurate studies of spectral lineshapes and line centre frequencies of hydrogen isotopologues and in general of Raman active transitions. Thanks to the frequency comb calibration of the detuning between pump and Stokes lasers and to an active alignment of the two beams, the frequency accuracy is at a level of 50 kHz. Over the vertical axis the spectrometer benefits from shot-noise limited detection, signal enhancement via multipass cell, active flattening of the spectral baseline and measurement times of few seconds over spectral spans larger than 10 GHz. Under these conditions an efficient averaging of Raman spectra i...
The stimulated Raman spectroscopy offers a great advantage over the other coherent Raman techniques ...
H2 is a benchmark system for fundamental physics, yet spectroscopy is hindered by the lack of dipole...
H2 is a benchmark system for fundamental physics, yet spectroscopy is hindered by the lack of dipole...
We discuss layout and performance of a high-resolution Stimulated Raman Loss spectrometer that has b...
Frequency combs have revolutionized optical frequency metrology, allowing one to determine highly ac...
International audienceWe introduce a comb-calibrated spectrometer for frequency metrology of Raman-a...
International audienceHighly accurate measurements of H2 transition frequencies is fundamental for t...
Molecular hydrogen is the subject of intensive theoretical and experimental studies because of its r...
International audienceOne of the most intriguing molecular targets for testing quantum electrodynami...
Using a specially designed excimer-laser-pumped dye laser of adjustable bandwidth high-lysing pure r...
Spectroscopy is at the heart of physical chemistry. In this thesis: several new spectroscopic experi...
The stimulated Raman spectroscopy offers a great advantage over the other coherent Raman techniques ...
H2 is a benchmark system for fundamental physics, yet spectroscopy is hindered by the lack of dipole...
H2 is a benchmark system for fundamental physics, yet spectroscopy is hindered by the lack of dipole...
We discuss layout and performance of a high-resolution Stimulated Raman Loss spectrometer that has b...
Frequency combs have revolutionized optical frequency metrology, allowing one to determine highly ac...
International audienceWe introduce a comb-calibrated spectrometer for frequency metrology of Raman-a...
International audienceHighly accurate measurements of H2 transition frequencies is fundamental for t...
Molecular hydrogen is the subject of intensive theoretical and experimental studies because of its r...
International audienceOne of the most intriguing molecular targets for testing quantum electrodynami...
Using a specially designed excimer-laser-pumped dye laser of adjustable bandwidth high-lysing pure r...
Spectroscopy is at the heart of physical chemistry. In this thesis: several new spectroscopic experi...
The stimulated Raman spectroscopy offers a great advantage over the other coherent Raman techniques ...
H2 is a benchmark system for fundamental physics, yet spectroscopy is hindered by the lack of dipole...
H2 is a benchmark system for fundamental physics, yet spectroscopy is hindered by the lack of dipole...