Optics Letters · 2002 · 91 citations · 11 references
Dissociation LimitEngineeringOptical PropertiesSpectroscopyNatural SciencesOptical SpectroscopyAtomic PhysicsAbsorption SpectroscopyPhysical ChemistryHyperfine Transition LinewidthQuantum ChemistryChemistryFrequency-doubled TiSpectrochemical AnalysisMolecular FragmentationBiophysicsSpectroscopic Method
A widely tunable and high-resolution spectrometer based on a frequency-doubled Ti:sapphire laser was used to explore sub-Doppler transitions of iodine molecules in the wavelength range 523-498 nm. The wavelength dependence of the hyperfine transition linewidth of iodine was mapped out in this region, and the narrowest linewidth was ~4 kHz near 508 nm. The hyperfine-resolved patterns were found to be largely modified toward the dissociation limit. The observed excellent signal-to-noise ratio should lead to high-quality optical frequency standards that are better than those of the popular 532-nm system.
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Jun Ye, Long Sheng, J. L. Hall · Physical Review Letters · 2001 · 199 citations · Full text
Engineering, Optical Transmission System, Molecular Biology +17