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All-optical coherent population trapping with defect spin ensembles in silicon carbide (1411.1366v2)

Published 5 Nov 2014 in cond-mat.mes-hall, cond-mat.mtrl-sci, and quant-ph

Abstract: Divacancy defects in silicon carbide have long-lived electronic spin states and sharp optical transitions, with properties that are similar to the nitrogen-vacancy defect in diamond. We report experiments on 4H-SiC that investigate all-optical addressing of spin states with the zero-phonon-line transitions. Our magneto-spectroscopy results identify the spin $S=1$ structure of the ground and excited state, and a role for decay via intersystem crossing. We use these results for demonstrating coherent population trapping of spin states with divacancy ensembles that have particular orientations in the SiC crystal.

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