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Discriminating States: The Quantum Chernoff Bound

K. M. R. Audenaert, J. Calsamiglia, R. Muñoz-Tapia, E. Bagan, Ll. Masanes, A. Acin, and F. Verstraete
Phys. Rev. Lett. 98, 160501 – Published 17 April 2007

Abstract

We consider the problem of discriminating two different quantum states in the setting of asymptotically many copies, and determine the minimal probability of error. This leads to the identification of the quantum Chernoff bound, thereby solving a long-standing open problem. The bound reduces to the classical Chernoff bound when the quantum states under consideration commute. The quantum Chernoff bound is the natural symmetric distance measure between quantum states because of its clear operational meaning and because it does not seem to share some of the undesirable features of other distance measures.

  • Received 18 October 2006

DOI:https://doi.org/10.1103/PhysRevLett.98.160501

©2007 American Physical Society

Authors & Affiliations

K. M. R. Audenaert

  • Institute for Mathematical Sciences, Imperial College London, 53 Prince’s Gate, London SW7 2PG, United Kingdom

J. Calsamiglia, R. Muñoz-Tapia, and E. Bagan

  • Grup de Física Teòrica, Universitat Autònoma de Barcelona, 08193 Bellaterra (Barcelona), Spain

Ll. Masanes

  • DAMTP, University of Cambridge, Wilberforce Road, Cambridge CB3 0WA, United Kingdom

A. Acin

  • ICFO-Institut de Ciencies Fotoniques, Mediterranean Technology Park, 08860 Castelldefels (Barcelona), Spain

F. Verstraete

  • Fakultät für Physik, Universität Wien, Boltzmanngasse 5, 1090 Wien, Austria

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Issue

Vol. 98, Iss. 16 — 20 April 2007

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