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Sharing Bell nonlocality of bipartite high-dimensional pure states using only projective measurements

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arxiv 2402.12614 v1 pith:IQCM6MTM submitted 2024-02-20 quant-ph

Sharing Bell nonlocality of bipartite high-dimensional pure states using only projective measurements

classification quant-ph
keywords nonlocalitymeasurementssharingbellprojectivestateshigh-dimensionalpure
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Bell nonlocality is the key quantum resource in some device-independent quantum information processing. It is of great importance to study the efficient sharing of this resource. Unsharp measurements are widely used in sharing the nonlocality of an entangled state shared among several sequential observers. Recently, the authors in [Phys. Rev. Lett.129, 230402(2022)] showed that the Bell nonlocality of two-qubit pure states can be shared even when one only uses projective measurements and local randomness. We demonstrate that projective measurements are also sufficient for sharing the Bell nonlocality of arbitrary high-dimensional pure bipartite states. Our results promote further understanding of the nonlocality sharing of high-dimensional quantum states under projective measurements.

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  1. Almost all pure entangled states enable unbounded nonlocality sharing

    quant-ph 2026-07 accept novelty 7.0

    Almost all pure entangled states, assisted by a small local ancilla, enable unbounded two-sided CHSH nonlocality sharing with only projective measurements via Hardy’s paradox.