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Generation and analysis of hyperentangled multiqubit states for photons using quantum-dot spins in optical microcavities

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Abstract

We propose a scheme for the generation of hyperentangled multiqubit cluster states and Greenberger–Horne–Zeilinger states in both polarization and spatial mode degrees of freedom using the quantum-dot cavity system. This device can be used as the complete analyzer of hyperentangled multiphoton states. This proposed hyperentanglement generation and analyzer device can serve as a crucial component of high capacity, long-distance quantum communication. Using existing experimental data, it is demonstrated that the present scheme may be feasible in strong-coupling regimes with current techniques.

© 2013 Optical Society of America

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