Abstract

In weakly bottlenecked ruby the decay of 29 cm -1 phonons is found to occur through spatial diffusion to the edge of the excitation zone, also when the phonon packets are fully separated in a magnetic field. The regime of very weak bottlenecking could be disclosed for experiment by a new technique, based on quasi-stationary tracking of the R 1 and R 2 fluorescence after switching on strong optical pumping.

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