Hyperbolic Metamaterials with Bragg Polaritons

We propose a novel mechanism for designing quantum hyperbolic metamaterials with the use of semiconductor Bragg mirrors containing periodically arranged quantum wells. The hyperbolic dispersion of exciton-polariton modes is realized near the top of the first allowed photonic miniband in such a struc...

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Veröffentlicht in:Physical review letters 2015-06, Vol.114 (23), p.237402-237402, Article 237402
Hauptverfasser: Sedov, Evgeny S, Iorsh, I V, Arakelian, S M, Alodjants, A P, Kavokin, Alexey
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Sprache:eng
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Zusammenfassung:We propose a novel mechanism for designing quantum hyperbolic metamaterials with the use of semiconductor Bragg mirrors containing periodically arranged quantum wells. The hyperbolic dispersion of exciton-polariton modes is realized near the top of the first allowed photonic miniband in such a structure which leads to the formation of exciton-polariton X waves. Exciton-light coupling provides a resonant nonlinearity which leads to nontrivial topologic solutions. We predict the formation of low amplitude spatially localized oscillatory structures: oscillons described by kink shaped solutions of the effective Ginzburg-Landau-Higgs equation. The oscillons have direct analogies in gravitational theory. We discuss implementation of exciton-polariton Higgs fields for the Schrödinger cat state generation.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.114.237402