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High-dimensional entanglement witnessed by correlations in arbitrary bases

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arxiv 2406.04395 v3 pith:4NVUUB7Q submitted 2024-06-06 quant-ph

classification quant-ph
keywords entanglementbasescorrelationshigh-dimensionalmubsarbitraryconstructionespecially
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Certifying entanglement is an important step in the development of many quantum technologies, especially for higher-dimensional systems, where entanglement promises increased capabilities for quantum communication and computation. A key feature distinguishing entanglement from classical correlations is the occurrence of correlations for complementary measurement bases. In particular, mutually unbiased bases (MUBs) are a paradigmatic example that is well-understood and routinely employed for entanglement certification. However, implementing unbiased measurements exactly is challenging and not generically possible for all physical platforms. Here, we extend the entanglement-certification toolbox from correlations in MUBs to arbitrary bases. This practically significant simplification paves the way for efficient characterizations of high-dimensional entanglement in a wide range of physical systems. Furthermore, we introduce a simple three-MUBs construction for all dimensions without using the Wootters-Fields construction, potentially simplifying experimental requirements when measurements in more than two MUBs are needed, especially in high-dimensional settings.

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Cited by 1 Pith paper

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  1. Witness based nonlinear detection of quantum entanglement

    quant-ph 2025-02 conditional novelty 6.0 of 10

    A crossed multi-copy pairing of entanglement witnesses detects entangled states that the individual witnesses and the standard same-copy pairing fail to detect.

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