Publication | Closed Access
Circular dichroism in photoelectron angular distributions from two-color (1+1) REMPI of NO
39
Citations
17
References
1987
Year
EngineeringDichroic EffectsMagnetic ResonanceChemistryElectronic Excited StateElectronic StructureSpectroscopic PropertyCircular DichroismPhotoelectron Angular DistributionsHyperfine DepolarizationOptical PropertiesObserved Cdad DataPhotophysical PropertyPhysicsPhotochemistryAtomic PhysicsPhysical ChemistryPhotoelectric MeasurementQuantum ChemistryExcited State PropertyNatural SciencesSpectroscopyApplied PhysicsDynamic Nuclear PolarizationOptoelectronics
A detailed experimental and theoretical study of dichroic effects in photoelectron angular distributions is reported for (1+1), two-color REMPI of NO via the A 2Σ+, v=0 state. Optically aligned A state rotational levels are probed through ionization by circularly polarized light. Resultant photoelectron angular distributions exhibit significant left–right asymmetry, the phase and magnitude of which are shown to be related to the curvature of the excited state MJ distribution. Theoretical calculations involving a full ab initio treatment of the ionization dynamics result in circularly dichroic angular distribution (CDAD) parameters in good agreement with those derived experimentally. Additional effects including hyperfine depolarization and coherence are also discussed in relation to the observed CDAD data.
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