The Journal of Chemical Physics · 1999 · 10 citations · 35 references
Localized Excited StateEngineeringChemistryElectronic Excited StateSpectra-structure CorrelationRotational TransitionOptical PropertiesHo35cl MoleculePhotophysical PropertyMolecular SpectroscopyPhotonicsPhysicsPhotochemistryAtomic PhysicsPhysical ChemistryPhotodissociation DetectionQuantum ChemistryMicrowave SpectroscopyExcited State PropertyNatural SciencesSpectroscopyApplied PhysicsPure Rotational Transitions
This paper describes a new spectroscopic technique which uses photodissociation to detect pure rotational transitions in highly excited vibrational energy levels of the ground electronic state. This method has initially been applied to the HO35Cl molecule in its second excited OH stretching vibration, the (200) state. In addition to observing the microwave signal, the Stark effect for this transition provides a dipole moment measurement in the (200) vibrational state. The (200) 180,18→171,17 transition occurs at 14 858.40(1) MHz and the b component of the dipole moment of this state is μb=1.515(5) D. The technique is quite general in that the rotational transition can involve energy levels up to, and exceeding, the dissociation threshold of the ground electronic state.
35
Dipole Moment and Hyperfine Parameters of H35Cl and D35Cl
E. W. Kaiser · The Journal of Chemical Physics · 1970 · 378 citations