All incompatible measurements on qubits lead to multiparticle Bell nonlocality

Fuente: arXiv
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Main Authors: Plávala, Martin, Gühne, Otfried, Quintino, Marco Túlio
Format: Preprint
Published: 2024
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author Plávala, Martin
Gühne, Otfried
Quintino, Marco Túlio
author_facet Plávala, Martin
Gühne, Otfried
Quintino, Marco Túlio
contents Bell nonlocality is a fundamental phenomenon of quantum physics as well as an essential resource for various tasks in quantum information processing. It is known that for the observation of nonlocality the measurements on a quantum system have to be incompatible, but the question which incompatible measurements are useful, remained open. Here we prove that any set of incompatible measurements on qubits leads to a violation of a suitable Bell inequality in a multiparticle scenario, where all parties perform the same set of measurements. Since there exists incompatible measurements on qubits which do not lead to Bell nonlocality for two particles, our results demonstrate a fundamental difference between two-particle and multi-particle nonlocality, pointing at the superactivation of measurement incompatibility as a resource. In addition, our results imply that measurement incompatibility for qubits can always be certified in a device-independent manner.
format Preprint
id arxiv_https___arxiv_org_abs_2403_10564
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle All incompatible measurements on qubits lead to multiparticle Bell nonlocality
Plávala, Martin
Gühne, Otfried
Quintino, Marco Túlio
Quantum Physics
Bell nonlocality is a fundamental phenomenon of quantum physics as well as an essential resource for various tasks in quantum information processing. It is known that for the observation of nonlocality the measurements on a quantum system have to be incompatible, but the question which incompatible measurements are useful, remained open. Here we prove that any set of incompatible measurements on qubits leads to a violation of a suitable Bell inequality in a multiparticle scenario, where all parties perform the same set of measurements. Since there exists incompatible measurements on qubits which do not lead to Bell nonlocality for two particles, our results demonstrate a fundamental difference between two-particle and multi-particle nonlocality, pointing at the superactivation of measurement incompatibility as a resource. In addition, our results imply that measurement incompatibility for qubits can always be certified in a device-independent manner.
title All incompatible measurements on qubits lead to multiparticle Bell nonlocality
topic Quantum Physics
url https://arxiv.org/abs/2403.10564