Nonviolation of Bell's inequality in translation invariant systems
The nature of quantum correlations in strongly correlated systems has been a subject of intense research. In particular, it has been realized that entanglement and quantum discord are present at quantum phase transitions and are able to characterize them. Surprisingly, it has been shown for a number...
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Published in | Europhysics letters Vol. 100; no. 6; p. P1 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
Published |
Les Ulis
IOP Publishing
01.12.2012
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Subjects | |
Online Access | Get full text |
ISSN | 0295-5075 1286-4854 |
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Abstract | The nature of quantum correlations in strongly correlated systems has been a subject of intense research. In particular, it has been realized that entanglement and quantum discord are present at quantum phase transitions and are able to characterize them. Surprisingly, it has been shown for a number of different systems that qubit pairwise states, even when highly entangled, do not violate Bell's inequalities, being in this sense local. Here the authors show that such a local character of quantum correlations traces back to the the monogamy trade-off obeyed by bipartite Bell correlations, being in fact general for translation invariant systems. They illustrate this result in a quantum spin chain with a soft breaking of translation symmetry. In addition, they provide an extension of the monogamy inequality to the N-qubit scenario, showing that the bound increases with N and providing examples of its saturation through uniformly generated random pure states. |
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AbstractList | The nature of quantum correlations in strongly correlated systems has been a subject of intense research. In particular, it has been realized that entanglement and quantum discord are present at quantum phase transitions and are able to characterize them. Surprisingly, it has been shown for a number of different systems that qubit pairwise states, even when highly entangled, do not violate Bell's inequalities, being in this sense local. Here the authors show that such a local character of quantum correlations traces back to the the monogamy trade-off obeyed by bipartite Bell correlations, being in fact general for translation invariant systems. They illustrate this result in a quantum spin chain with a soft breaking of translation symmetry. In addition, they provide an extension of the monogamy inequality to the N-qubit scenario, showing that the bound increases with N and providing examples of its saturation through uniformly generated random pure states. |
Author | Saguia, A de Oliveira, Thiago R Sarandy, M S |
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SubjectTerms | Bell's inequality Correlation Inequalities Invariants Qubits (quantum computing) Saturation Tradeoffs Translations |
Title | Nonviolation of Bell's inequality in translation invariant systems |
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