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Multimode Molecular Dynamics Beyond the Born‐Oppenheimer Approximation

H. Köuppel, Wolfgang Domcke, Lorenz S. Cederbaum

Open publisher page 1,099 citations

Abstract

This chapter contains sections titled: Introduction Theory of Multimode Vibronic Coupling Effects The Two State Problem Vibronic Coupling involving Degenerate Models and Degenerate States Multimode vibronic Coupling Effects in Spectroscopy Statisstical Behaviour of vibronic Energy Levels Conical Intersections and Time evaluation of Floursecence Conclusions

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What this paper is about

This chapter contains sections titled: Introduction Theory of Multimode Vibronic Coupling Effects The Two State Problem Vibronic Coupling involving Degenerate Models and Degenerate States Multimode vibronic Coupling Effects in Spectroscopy Statisstical Behaviour of vibronic Energy Levels Conical Intersections and Time evaluation of Floursecence Conclusions

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Available abstract

This chapter contains sections titled: Introduction Theory of Multimode Vibronic Coupling Effects The Two State Problem Vibronic Coupling involving Degenerate Models and Degenerate States Multimode vibronic Coupling Effects in Spectroscopy Statisstical Behaviour of vibronic Energy Levels Conical Intersections and Time evaluation of Floursecence Conclusions

Key concepts: Vibronic coupling, Born–Oppenheimer approximation, Conical intersection, Vibronic spectroscopy, Degenerate energy levels, Multi-mode optical fiber, Coupling (piping), Physics

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