Experimental Generation of Quantum Discord via Noisy Processes

B. P. Lanyon, P. Jurcevic, C. Hempel, M. Gessner, V. Vedral, R. Blatt, and C. F. Roos
Phys. Rev. Lett. 111, 100504 – Published 5 September 2013
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Abstract

Quantum systems in mixed states can be unentangled and yet still nonclassically correlated. These correlations can be quantified by the quantum discord and might provide a resource for quantum information processing tasks. By precisely controlling the interaction of two ionic qubits with their environment, we investigate the capability of noise to generate discord. Firstly, we show that noise acting on only one quantum system can generate discord between two. States generated in this way are restricted in terms of the rank of their correlation matrix. Secondly, we show that classically correlated noise processes are capable of generating a much broader range of discordant states with correlation matrices of any rank. Our results show that noise processes prevalent in many physical systems can automatically generate nonclassical correlations and highlight fundamental differences between discord and entanglement.

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  • Received 12 April 2013

DOI:https://doi.org/10.1103/PhysRevLett.111.100504

© 2013 American Physical Society

Authors & Affiliations

B. P. Lanyon1,2,*, P. Jurcevic1,2, C. Hempel1,2, M. Gessner3,4, V. Vedral5,6,7, R. Blatt1,2, and C. F. Roos1,2

  • 1Institut für Quantenoptik und Quanteninformation, Österreichische Akademie der Wissenschaften, Technikerstrasse 21A, 6020 Innsbruck, Austria
  • 2Institut für Experimentalphysik, Universität Innsbruck, Technikerstrasse 25, 6020 Innsbruck, Austria
  • 3Department of Physics, University of California, Berkeley, California 94720, USA
  • 4Physikalisches Institut, Universität Freiburg, Hermann-Herder-Strasse 3, D-79104 Freiburg, Germany
  • 5Centre for Quantum Technologies, National University of Singapore, 3 Science Drive 2, 117543 Singapore, Singapore
  • 6Clarendon Laboratory, Department of Physics, University of Oxford, Parks Road, Oxford OX1 3PU, United Kingdom
  • 7Department of Physics, National University of Singapore, 2 Science Drive 3, 117542 Singapore, Singapore

  • *Corresponding author. ben.lanyon@uibk.ac.at

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Issue

Vol. 111, Iss. 10 — 6 September 2013

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