2013Unpublished venueRequires access

Reconstruction of High-Dimensional States Entangled in Orbital Angular Momentum Using Mutually Unbiased Measurements

Daniel Giovannini, Jacquiline Romero, Jonathan Leach, Angela Dudley, Andrew Forbes, Miles J. Padgett

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Abstract

Efficient quantum state reconstruction of a high-dimensional multi-partite quantum system can be performed by considering mutually unbiased measurements of the individual parts. We illustrate this approach experimentally using a bipartite photonic system entangled in orbital angular momentum.

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Efficient quantum state reconstruction of a high-dimensional multi-partite quantum system can be performed by considering mutually unbiased measurements of the individual parts. We illustrate this approach experimentally using a bipartite photonic system entangled in orbital angular momentum.

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Available abstract

Efficient quantum state reconstruction of a high-dimensional multi-partite quantum system can be performed by considering mutually unbiased measurements of the individual parts. We illustrate this approach experimentally using a bipartite photonic system entangled in orbital angular momentum.

Key concepts: Angular momentum, Physics, Orbital angular momentum multiplexing, Azimuthal quantum number, Total angular momentum quantum number, Bipartite graph, Quantum entanglement, Angular momentum coupling

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