Correlation minor norms, entanglement detection and discord
Abstract In this paper we develop an approach for detecting entanglement, which is based on measuring quantum correlations and constructing a correlation matrix. The correlation matrix is then used for defining a family of parameters, named Correlation Minor Norms, which allow one to detect entangle...
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2021-02-01
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Online Access: | https://doi.org/10.1038/s41598-021-82303-3 |
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doaj-70bbf662ca5b47ffb9dfb64b540f7ddb2021-02-07T12:38:07ZengNature Publishing GroupScientific Reports2045-23222021-02-011111910.1038/s41598-021-82303-3Correlation minor norms, entanglement detection and discordBar Y. Peled0Amit Te’eni1Avishy Carmi2Eliahu Cohen3Center for Quantum Information Science and Technology and Faculty of Engineering Sciences, Ben-Gurion University of the NegevFaculty of Engineering and the Institute of Nanotechnology and Advanced Materials, Bar Ilan UniversityCenter for Quantum Information Science and Technology and Faculty of Engineering Sciences, Ben-Gurion University of the NegevFaculty of Engineering and the Institute of Nanotechnology and Advanced Materials, Bar Ilan UniversityAbstract In this paper we develop an approach for detecting entanglement, which is based on measuring quantum correlations and constructing a correlation matrix. The correlation matrix is then used for defining a family of parameters, named Correlation Minor Norms, which allow one to detect entanglement. This approach generalizes the computable cross-norm or realignment (CCNR) criterion, and moreover requires measuring a state-independent set of operators. Furthermore, we illustrate a scheme which yields for each Correlation Minor Norm a separable state that maximizes it. The proposed entanglement detection scheme is believed to be advantageous in comparison to other methods because correlations have a simple, intuitive meaning and in addition they can be directly measured in experiment. Moreover, it is demonstrated to be stronger than the CCNR criterion. We also illustrate the relation between the Correlation Minor Norm and entanglement entropy for pure states. Finally, we discuss the relation between the Correlation Minor Norm and quantum discord. We demonstrate that the CMN may be used to define a new measure for quantum discord.https://doi.org/10.1038/s41598-021-82303-3 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Bar Y. Peled Amit Te’eni Avishy Carmi Eliahu Cohen |
spellingShingle |
Bar Y. Peled Amit Te’eni Avishy Carmi Eliahu Cohen Correlation minor norms, entanglement detection and discord Scientific Reports |
author_facet |
Bar Y. Peled Amit Te’eni Avishy Carmi Eliahu Cohen |
author_sort |
Bar Y. Peled |
title |
Correlation minor norms, entanglement detection and discord |
title_short |
Correlation minor norms, entanglement detection and discord |
title_full |
Correlation minor norms, entanglement detection and discord |
title_fullStr |
Correlation minor norms, entanglement detection and discord |
title_full_unstemmed |
Correlation minor norms, entanglement detection and discord |
title_sort |
correlation minor norms, entanglement detection and discord |
publisher |
Nature Publishing Group |
series |
Scientific Reports |
issn |
2045-2322 |
publishDate |
2021-02-01 |
description |
Abstract In this paper we develop an approach for detecting entanglement, which is based on measuring quantum correlations and constructing a correlation matrix. The correlation matrix is then used for defining a family of parameters, named Correlation Minor Norms, which allow one to detect entanglement. This approach generalizes the computable cross-norm or realignment (CCNR) criterion, and moreover requires measuring a state-independent set of operators. Furthermore, we illustrate a scheme which yields for each Correlation Minor Norm a separable state that maximizes it. The proposed entanglement detection scheme is believed to be advantageous in comparison to other methods because correlations have a simple, intuitive meaning and in addition they can be directly measured in experiment. Moreover, it is demonstrated to be stronger than the CCNR criterion. We also illustrate the relation between the Correlation Minor Norm and entanglement entropy for pure states. Finally, we discuss the relation between the Correlation Minor Norm and quantum discord. We demonstrate that the CMN may be used to define a new measure for quantum discord. |
url |
https://doi.org/10.1038/s41598-021-82303-3 |
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