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Realization of symmetric sharing of entanglement in semiconductor microcrystallites coupled by a cavity field

Yu-xi Liu, Adam Miranowicz, Masato Koashi, Nobuyuki Imoto

quant-pharXiv:quant-ph/0212150

Abstract

The entanglement of excitonic states in a system of N spatially separated semiconductor microcrystallites is investigated. The interaction among the different microcrystallites is mediated by a single-mode cavity field. It is found that the symmetric sharing of the entanglement (measured by the concurrence) between any pair of the excitonic state with N qubits defined by the number states (vacuum and a single-exciton states) or the coherent states (odd and even coherent states) can be prepared by the cavity field for this system.

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