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Feshbach blockade: single-photon nonlinear optics using resonantly enhanced cavity-polariton scattering from biexciton states

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arxiv 1002.2613 v1 pith:CVUF7KO2 submitted 2010-02-12 cond-mat.quant-gas

Feshbach blockade: single-photon nonlinear optics using resonantly enhanced cavity-polariton scattering from biexciton states

classification cond-mat.quant-gas
keywords biexcitoncavity-polaritonsfeshbachpairscatteringsingle-photonstateanalytical
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We theoretically demonstrate how the resonant coupling between a pair of cavity-polaritons and a biexciton state can lead to a large single-photon Kerr nonlinearity in a semiconductor solid-state system. A fully analytical model of the scattering process between a pair of cavity-polaritons is developed, which explicitly includes the biexcitonic intermediate state. A dramatic enhancement of the polariton-polariton interactions is predicted in the vicinity of the biexciton Feshbach resonance. Application to the generation of non-classical light from polariton dots is discussed.

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