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Projective measurements are sufficient for recycling nonlocality

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arxiv 2202.05007 v3 pith:V4A7SFO5 submitted 2022-02-10 quant-ph

Projective measurements are sufficient for recycling nonlocality

classification quant-ph
keywords nonlocalitymeasurementsentangledprojectivesequentialchshonlyrandomness
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Unsharp measurements are widely seen as the key resource for recycling the nonlocality of an entangled state shared between several sequential observers. Contrasting this, we here show that nonlocality can be recycled using only standard projective measurements, without using quantum ancillas. Focusing on the CHSH inequality, we determine the optimal trade-off in the Bell parameters for a maximally entangled two-qubit state in the presence of shared classical randomness. We then find that non-maximally entangled states make possible larger sequential violations, which contrasts the standard CHSH scenario. Furthermore, we show that nonlocality can be recycled even when only using projective measurements and local randomness. We discuss the implications of our results for experimental implementations of sequential nonlocality.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  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.