Symmetric Extensions of Quantum States and Local Hidden Variable Theories
Barbara M. Terhal, Andrew C. Doherty, David Schwab
Abstract
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Barbara M. Terhal, Andrew C. Doherty, David Schwab
Abstract
Open-access reader
While all bipartite pure entangled states violate some Bell inequality, the relationship between entanglement and nonlocality for mixed quantum states is not well understood. We introduce a simple and efficient algorithmic approach for the problem of constructing local hidden variable theories for quantum states. The method is based on constructing a so-called symmetric quasiextension of the quantum state that gives rise to a local hidden variable model with a certain number of settings for the observers Alice and Bob.
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While all bipartite pure entangled states violate some Bell inequality, the relationship between entanglement and nonlocality for mixed quantum states is not well understood. We introduce a simple and efficient algorithmic approach for the problem of constructing local hidden variable theories for quantum states. The method is based on constructing a so-called symmetric quasiextension of the quantum state that gives rise to a local hidden variable model with a certain number of settings for the observers Alice and Bob.
Key concepts: Quantum nonlocality, Hidden variable theory, Local hidden variable theory, Quantum entanglement, Bipartite graph, Quantum discord, Simple (philosophy), Bell's theorem