Requirement of dissonance in assisted optimal state discrimination
A fundamental problem in quantum information is to explore what kind of quantum correlations is responsible for successful completion of a quantum information procedure. Here we study the roles of entanglement, discord, and dissonance needed for optimal quantum state discrimination when the latter i...
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sg-ntu-dr.10356-1007342022-02-16T16:30:02Z Requirement of dissonance in assisted optimal state discrimination Zhang, Fu-Lin. Chen, Jing-Ling. Kwek, L. C. Vedral, Vlatko. Institute of Advanced Studies A fundamental problem in quantum information is to explore what kind of quantum correlations is responsible for successful completion of a quantum information procedure. Here we study the roles of entanglement, discord, and dissonance needed for optimal quantum state discrimination when the latter is assisted with an auxiliary system. In such process, we present a more general joint unitary transformation than the existing results. The quantum entanglement between a principal qubit and an ancilla is found to be completely unnecessary, as it can be set to zero in the arbitrary case by adjusting the parameters in the general unitary without affecting the success probability. This result also shows that it is quantum dissonance that plays as a key role in assisted optimal state discrimination and not quantum entanglement. A necessary criterion for the necessity of quantum dissonance based on the linear entropy is also presented. PACS numbers: 03.65.Ta, 03.67.Mn, 42.50.Dv Published version 2013-09-04T08:27:04Z 2019-12-06T20:27:22Z 2013-09-04T08:27:04Z 2019-12-06T20:27:22Z 2013 2013 Journal Article Zhang, F. L., Chen, J. L., Kwek, L. C.,& Vedral, V. (2013). Requirement of Dissonance in Assisted Optimal State Discrimination. Scientific Reports, 3. 2045-2322 https://hdl.handle.net/10356/100734 http://hdl.handle.net/10220/13321 10.1038/srep02134 23823646 en Scientific reports © 2013 Nature Publishing Group. This is Open Access journal. This work is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike 3.0 Unported License. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-sa/3.0/ application/pdf |
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A fundamental problem in quantum information is to explore what kind of quantum correlations is responsible for successful completion of a quantum information procedure. Here we study the roles of entanglement, discord, and dissonance needed for optimal quantum state discrimination when the latter is assisted with an auxiliary system. In such process, we present a more general joint unitary transformation than the existing results. The quantum entanglement between a principal qubit and an ancilla is found to be completely unnecessary, as it can be set to zero in the arbitrary case by adjusting the parameters in the general unitary without affecting the success probability. This result also shows that it is quantum dissonance that plays as a key role in assisted optimal state discrimination and not quantum entanglement. A necessary criterion for the necessity of quantum dissonance based on the linear entropy is also presented. PACS numbers: 03.65.Ta, 03.67.Mn, 42.50.Dv |
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Institute of Advanced Studies |
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Institute of Advanced Studies Zhang, Fu-Lin. Chen, Jing-Ling. Kwek, L. C. Vedral, Vlatko. |
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Article |
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Zhang, Fu-Lin. Chen, Jing-Ling. Kwek, L. C. Vedral, Vlatko. |
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Zhang, Fu-Lin. Chen, Jing-Ling. Kwek, L. C. Vedral, Vlatko. Requirement of dissonance in assisted optimal state discrimination |
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Zhang, Fu-Lin. |
title |
Requirement of dissonance in assisted optimal state discrimination |
title_short |
Requirement of dissonance in assisted optimal state discrimination |
title_full |
Requirement of dissonance in assisted optimal state discrimination |
title_fullStr |
Requirement of dissonance in assisted optimal state discrimination |
title_full_unstemmed |
Requirement of dissonance in assisted optimal state discrimination |
title_sort |
requirement of dissonance in assisted optimal state discrimination |
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2013 |
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https://hdl.handle.net/10356/100734 http://hdl.handle.net/10220/13321 |
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