Certification of two-qubit quantum systems with temporal inequality

Fuente: arXiv
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Autori principali: Jebarathinam, Chellasamy, Sharma, Gautam, Sazim, Sk, Augusiak, Remigiusz
Natura: Preprint
Pubblicazione: 2023
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author Jebarathinam, Chellasamy
Sharma, Gautam
Sazim, Sk
Augusiak, Remigiusz
author_facet Jebarathinam, Chellasamy
Sharma, Gautam
Sazim, Sk
Augusiak, Remigiusz
contents Self-testing of quantum devices based on observed measurement statistics is a method to certify quantum systems using minimal resources. In Ref. [Phys. Rev. \textbf{A} 101, 032106 (2020)], a scheme based on observing measurement statistics that demonstrate Kochen-Specker contextuality has been shown to certify two-qubit entangled states and measurements without the requirement of spatial separation between the subsystems. However, this scheme assumes a set of compatibility conditions on the measurements which are crucial to demonstrating Kochen-Specker contextuality. In this work, we propose a self-testing protocol to certify the above two-qubit states and measurements without the assumption of the compatibility conditions, and at the same time without requiring the spatial separation between the subsystems. Our protocol is based on the observation of sequential correlations leading to the maximal violation of a temporal inequality derived from non-contextuality inequality. Moreover, our protocol is robust to small experimental errors or noise.
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id arxiv_https___arxiv_org_abs_2307_06710
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Certification of two-qubit quantum systems with temporal inequality
Jebarathinam, Chellasamy
Sharma, Gautam
Sazim, Sk
Augusiak, Remigiusz
Quantum Physics
Self-testing of quantum devices based on observed measurement statistics is a method to certify quantum systems using minimal resources. In Ref. [Phys. Rev. \textbf{A} 101, 032106 (2020)], a scheme based on observing measurement statistics that demonstrate Kochen-Specker contextuality has been shown to certify two-qubit entangled states and measurements without the requirement of spatial separation between the subsystems. However, this scheme assumes a set of compatibility conditions on the measurements which are crucial to demonstrating Kochen-Specker contextuality. In this work, we propose a self-testing protocol to certify the above two-qubit states and measurements without the assumption of the compatibility conditions, and at the same time without requiring the spatial separation between the subsystems. Our protocol is based on the observation of sequential correlations leading to the maximal violation of a temporal inequality derived from non-contextuality inequality. Moreover, our protocol is robust to small experimental errors or noise.
title Certification of two-qubit quantum systems with temporal inequality
topic Quantum Physics
url https://arxiv.org/abs/2307.06710