Direct measurement of nonlinear properties of bipartite quantum states.

Nonlinear properties of quantum states, such as entropy or entanglement, quantify important physical resources and are frequently used in quantum-information science. They are usually calculated from a full description of a quantum state, even though they depend only on a small number of parameters...

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Main Authors: Bovino, F, Castagnoli, G, Ekert, A, Horodecki, P, Alves, C, Sergienko, A
Format: Journal article
Language:English
Published: 2005
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author Bovino, F
Castagnoli, G
Ekert, A
Horodecki, P
Alves, C
Sergienko, A
author_facet Bovino, F
Castagnoli, G
Ekert, A
Horodecki, P
Alves, C
Sergienko, A
author_sort Bovino, F
collection OXFORD
description Nonlinear properties of quantum states, such as entropy or entanglement, quantify important physical resources and are frequently used in quantum-information science. They are usually calculated from a full description of a quantum state, even though they depend only on a small number of parameters that specify the state. Here we extract a nonlocal and a nonlinear quantity, namely, the Renyi entropy, from local measurements on two pairs of polarization-entangled photons. We also introduce a "phase marking" technique which allows the selection of uncorrupted outcomes even with nondeterministic sources of entangled photons. We use our experimental data to demonstrate the violation of entropic inequalities. They are examples of nonlinear entanglement witnesses and their power exceeds all linear tests for quantum entanglement based on all possible Bell-Clauser-Horne-Shimony-Holt inequalities.
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spelling oxford-uuid:8d3fc8eb-d9d6-426b-9f27-871cc198b7ad2022-03-26T22:50:05ZDirect measurement of nonlinear properties of bipartite quantum states.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:8d3fc8eb-d9d6-426b-9f27-871cc198b7adEnglishSymplectic Elements at Oxford2005Bovino, FCastagnoli, GEkert, AHorodecki, PAlves, CSergienko, ANonlinear properties of quantum states, such as entropy or entanglement, quantify important physical resources and are frequently used in quantum-information science. They are usually calculated from a full description of a quantum state, even though they depend only on a small number of parameters that specify the state. Here we extract a nonlocal and a nonlinear quantity, namely, the Renyi entropy, from local measurements on two pairs of polarization-entangled photons. We also introduce a "phase marking" technique which allows the selection of uncorrupted outcomes even with nondeterministic sources of entangled photons. We use our experimental data to demonstrate the violation of entropic inequalities. They are examples of nonlinear entanglement witnesses and their power exceeds all linear tests for quantum entanglement based on all possible Bell-Clauser-Horne-Shimony-Holt inequalities.
spellingShingle Bovino, F
Castagnoli, G
Ekert, A
Horodecki, P
Alves, C
Sergienko, A
Direct measurement of nonlinear properties of bipartite quantum states.
title Direct measurement of nonlinear properties of bipartite quantum states.
title_full Direct measurement of nonlinear properties of bipartite quantum states.
title_fullStr Direct measurement of nonlinear properties of bipartite quantum states.
title_full_unstemmed Direct measurement of nonlinear properties of bipartite quantum states.
title_short Direct measurement of nonlinear properties of bipartite quantum states.
title_sort direct measurement of nonlinear properties of bipartite quantum states
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