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- W2804871475 abstract "We embed a hyperbolic metamaterial based on stacked layer pairs of epitaxially grown ZnO/ZnO:Ga in a monolithic optical microcavity, and we investigate the arising unique resonant effects experimentally and theoretically. Unlike traditional metals, the semiconductor-based approach allows us to utilize all three permittivity regions of the hyperbolic metamaterial in the near-infrared spectral range. This configuration gives rise to modes of identical orders appearing at different frequencies, a zeroth-order resonance in an all-positive permittivity region, and a continuum of high-order modes. In addition, an unusual lower cutoff frequency is introduced to the resonator mode spectrum. The observed effects expand the possibilities for customization of optical resonators; in particular, the zeroth-order and high-order modes hold strong potential for the realization of deeply subwavelength cavity sizes." @default.
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- W2804871475 date "2018-05-17" @default.
- W2804871475 modified "2023-09-25" @default.
- W2804871475 title "Anomalous resonances of an optical microcavity with a hyperbolic metamaterial core" @default.
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- W2804871475 doi "https://doi.org/10.1103/physrevb.97.195133" @default.
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