Publication | Closed Access
High-Resolution Laser Spectroscopy on the Negative Osmium Ion
57
Citations
11
References
2009
Year
Microwave SpectroscopyEngineeringPhysicsAtomic Emission SpectroscopyOptical PropertiesSpectroscopyLaser SpectroscopyApplied PhysicsNegative Atomic IonsNatural SciencesAtomic PhysicsCollinear SpectroscopyNegative Osmium IonAbsorption SpectroscopyQuantum ChemistryLaser ExcitationSynchrotron RadiationAtomic Fluorescence Spectroscopy
We have applied a combination of laser excitation and electric-field detachment to negative atomic ions for the first time, resulting in an enhancement of the excited-state detection efficiency for spectroscopy by at least 2 orders of magnitude. Applying the new method, a measurement of the bound-bound electric-dipole transition frequency in (192)Os- was performed using collinear spectroscopy with a narrow-bandwidth cw laser. The transition frequency was found to be 257.831 190(35) THz [wavelength 1162.747 06(16) nm, wave number 8600.3227(12) cm(-1)], in agreement with the only prior measurement, but with more than 100-fold higher precision.
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