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Experimental observation of strong light-matter coupling in ZnO microcavities: influence of large excitonic absorption

arXiv:0812.3383 · doi:10.1103/PhysRevB.79.125302

Abstract

We present experimental observation of the strong light-matter coupling regime in ZnO bulk microcavities grown on silicon. Angle resolved reflectivity measurements, corroborated by transfer-matrix simulations, show that Rabi splittings in the order of 70 meV are achieved even for low finesse cavities. The impact of the large excitonic absorption, which enables a ZnO bulk-like behavior to be observed even in the strong coupling regime, is illustrated both experimentally and theoretically by considering cavities with increasing thickness.