## Abstract The effect of static inhomogeneous environmental broadening of resonance Raman excitation profiles was investigated. The roles of diagonal and nonβdiagonal terms in the twoβfold sum over the local mode vibrational states in the excited intermediate electronic state are discussed. The th
Effect of homogeneous and inhomogeneous broadening on resonance CARS excitation profiles
β Scribed by A. Materny; W. Kiefer
- Publisher
- John Wiley and Sons
- Year
- 1992
- Tongue
- English
- Weight
- 506 KB
- Volume
- 23
- Category
- Article
- ISSN
- 0377-0486
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β¦ Synopsis
Abstract
The influence of broadening due to intrinsic molecule and ensemble properties (homogeneous and inhomogeneous broadening) on resonance CARS excitation profiles (CEPs) was investigated by means of a theoretical model. The nonβlinear susceptibility Ο^(3)^ of a homogeneous ensemble of molecules was derived from perturbation theory using a FranckβCondon model and applying a crude BornβOppenheimer approximation. Then it was assumed that these molecules are situated in an inhomogeneous environment which changes their electronic energies. The CARS intensity for this inhomogeneous ensemble was obtained from the homogeneous CARS intensity taking into account a distribution of energies. The influence of homogeneous and inhomogeneous broadening on CEPs was demonstrated by model calculations and compared with results obtained for resonance Raman excitation profiles. Possible applications are discussed.
π SIMILAR VOLUMES
The effect of static inhomogeneous environmental broadening of Raman excitation profiles and Raman peak intensity distribution of solute molecules was investigated. Homogeneous broadening is represented by Lorentzians and inhomogeneous broadening by Gaussians, where the latter reflect distributions
We investigate the influence of excitonic localization on the corresponding biexcitonic states in GaAs quantum wells by spectrally resolved four-wave mixing. With increasing localization, the biexciton binding energy increases, while the biexciton continuum shifts to higher energies. The localizatio
## CHEhIICALPH~SiCSLEITERS : 1 April1976 The structure of a Raman excitation profde is shown to depend on the naturk of the mechanism responsible for the line\_ shape in the absorption spectra. In princide. this makes it nossibie to separate fine broadening corresponding to the lifetime \_ \_of t