Efficient generation of graph states for quantum computation

New J. Phys. 7, 124 (2005) We present an entanglement generation scheme which allows arbitrary graph states to be efficiently created in a linear quantum register via an auxiliary entangling bus. The dynamics of the entangling bus is described by an effective non-interacting fermionic system undergo...

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Hauptverfasser: Clark, S. R, Alves, C. Moura, Jaksch, D
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Sprache:eng
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Zusammenfassung:New J. Phys. 7, 124 (2005) We present an entanglement generation scheme which allows arbitrary graph states to be efficiently created in a linear quantum register via an auxiliary entangling bus. The dynamics of the entangling bus is described by an effective non-interacting fermionic system undergoing mirror-inversion in which qubits, encoded as local fermionic modes, become entangled purely by Fermi statistics. We discuss a possible implementation using two species of neutral atoms stored in an optical lattice and find that the scheme is realistic in its requirements even in the presence of noise.
DOI:10.48550/arxiv.quant-ph/0406150