Abstract

The relation between the homogeneous absorption spectrum of impurity centers and the hole photochemically burned by monochromatic laser radiation in an inhomogeneous absorption spectrum is studied. The changes, due to the burning, of the zero-phonon is studied. The changes, due to the burning, of the zero-phonon hole contour are analytically calculated for any ratio of the laser and the zero-phonon lines. The model calculations are confirmed by experiments with the protoporphyrin dictation in an amorphous matrix at helium temperature.

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