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  • Letter

Characterizing high-dimensional quantum contextuality

Xiao-Dong Yu1,*, Isadora Veeren2,3,†, and Otfried Gühne2,‡

  • 1Department of Physics, Shandong University, Jinan 250100, China
  • 2Naturwissenschaftlich-Technische Fakultät, Universität Siegen, Walter-Flex-Str. 3, D-57068 Siegen, Germany
  • 3Centro Brasileiro de Pesquisas Físicas (CBPF), Rua Doutor Xavier Sigaud 150, 22290-180 Rio de Janeiro, Brazil

  • *yuxiaodong@sdu.edu.cn
  • †veeren@cbpf.br
  • ‡otfried.guehne@uni-siegen.de

Phys. Rev. A 109, L030201 – Published 13 March, 2024

DOI: https://doi.org/10.1103/PhysRevA.109.L030201

Abstract

As a phenomenon encompassing measurement incompatibility and Bell nonlocality, quantum contextuality is not only central to our understanding of quantum mechanics, but also an essential resource in many quantum information processing tasks. The dimension-dependent feature of quantum contextuality is known ever since its discovery, but there is still a lack of systematic methods for characterizing this fundamental feature. In this work, we propose a systematic and reliable method for certifying the high-dimensional advantages of quantum contextuality. In theory, our work gives a complete characterization of the dimension-constrained quantum contextual behavior, and particularly its nonconvex structure is revealed. In application, our method can be used for dimensionality certification of quantum information processing systems, and also for concentrating the quantum contextual behavior into lower-dimensional systems.

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