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Full-field mode sorter using two optimized phase transformations for high-dimensional quantum cryptography

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arxiv 1905.01175 v1 pith:XGWUVDUX submitted 2019-05-03 quant-ph physics.optics

classification quant-phphysics.optics
keywords high-dimensionalquantumschemescryptographyencodingfull-fieldgeneralmode
verification ladder T0 review T1 audit T2 compute T3 formal
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High-dimensional encoding schemes have emerged as a novel way to perform quantum information tasks. For high dimensionality, temporal and transverse spatial modes of photons are the two paradigmatic degrees of freedom commonly used in such experiments. Nevertheless, general devices for multi-outcome measurements are still needed to take full advantage of the high-dimensional nature of encoding schemes. We propose a general full-field mode sorting scheme consisting only of up to two optimized phase elements based on evolutionary algorithms that allows for joint sorting of azimuthal and radial modes in a wide range of bases. We further study the performance of our scheme through simulations in the context of high-dimensional quantum cryptography, where high-fidelity measurement schemes are crucial.

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