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
Abstract
Daniel Giovannini, Jacquiline Romero, Jonathan Leach, Angela Dudley, Andrew Forbes, Miles J. Padgett
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.
Key concepts: Angular momentum, Physics, Orbital angular momentum multiplexing, Azimuthal quantum number, Total angular momentum quantum number, Bipartite graph, Quantum entanglement, Angular momentum coupling