Abstract

Magnetic circular dichroism (MCD) and stress dichroism (SD) in the absorption spectrum due to ( s ) 2 →( s ) 1 ( p ) 1 transition with electron lattice interaction have been theoretically studied in order to investigate the further consequence of the Jahn-Teller effect in the excited state. In the framework of the classical Frank-Condon approximation, dichroic absorption spectra have bee numerically calculated by means of the Monte Carlo integration over the five-dimensional “interaction-mode” coordinate space. Calculated dichroic spectra are consistent with the existing data for the line shapes of MCD and SD in the Tl + -like centers in alkali halides.

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