The Journal of Chemical Physics · 1978 · 113 citations · 18 references
Vibrational Hyper-raman ScatteringEngineeringSurface-enhanced Raman ScatteringVibrational Mode ClassificationLight Scattering SpectroscopyOptical PropertiesOptical SpectroscopyBiophysicsHyper-raman EffectPhysicsElectric Dipole ApproximationPhysical ChemistryQuantum ChemistryNatural SciencesSpectroscopyApplied PhysicsLight ScatteringSpectral AnalysisSpectral LinesHyperpolarizability TensorSpectroscopic Method
The theory of vibrational hyper-Raman scattering (inelastic second harmonic light scattering) is developed within the framework of quantum electrodynamics. The dynamical system comprises the molecule and the radiation field, coupled by multipolar interactions. In the present work, the electric dipole approximation is employed and the results involve the hyperpolarizability tensor. In contrast to previous work, full index symmetry of this tensor is not assumed. The tensor is decomposed into irreducible weights forming the basis for a new vibrational mode classification scheme. A set of five experiments is specified which allows unambiguous assignment of an active mode to one of six classes. The scheme has been applied to several molecules and compared with some experimental results. Explicit expressions for scattering intensities for a wide variety of experimental configurations are given; results for depolarization ratios are also presented.
18
Measurements of Nonlinear Light Scattering
R. W. Terhune, P. D. Maker, C. M. Savage · Physical Review Letters · 1965 · 572 citations
S. J. Cyvín, John Rauch, J. C. Decius · The Journal of Chemical Physics · 1965 · 472 citations
Engineering, Nonlinear Optics, Surface-enhanced Raman Scattering +22