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      Diagonalizing Transfer Matrices and Matrix Product Operators: A Medley of Exact and Computational Methods

      1 , 1 , 2
      Annual Review of Condensed Matter Physics
      Annual Reviews

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          Quantum entanglement

          All our former experience with application of quantum theory seems to say: {\it what is predicted by quantum formalism must occur in laboratory}. But the essence of quantum formalism - entanglement, recognized by Einstein, Podolsky, Rosen and Schr\"odinger - waited over 70 years to enter to laboratories as a new resource as real as energy. This holistic property of compound quantum systems, which involves nonclassical correlations between subsystems, is a potential for many quantum processes, including ``canonical'' ones: quantum cryptography, quantum teleportation and dense coding. However, it appeared that this new resource is very complex and difficult to detect. Being usually fragile to environment, it is robust against conceptual and mathematical tools, the task of which is to decipher its rich structure. This article reviews basic aspects of entanglement including its characterization, detection, distillation and quantifying. In particular, the authors discuss various manifestations of entanglement via Bell inequalities, entropic inequalities, entanglement witnesses, quantum cryptography and point out some interrelations. They also discuss a basic role of entanglement in quantum communication within distant labs paradigm and stress some peculiarities such as irreversibility of entanglement manipulations including its extremal form - bound entanglement phenomenon. A basic role of entanglement witnesses in detection of entanglement is emphasized.
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            Fault-tolerant quantum computation by anyons

            A. Kitaev (1997)
            A two-dimensional quantum system with anyonic excitations can be considered as a quantum computer. Unitary transformations can be performed by moving the excitations around each other. Measurements can be performed by joining excitations in pairs and observing the result of fusion. Such computation is fault-tolerant by its physical nature.
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              Absence of Mott Transition in an Exact Solution of the Short-Range, One-Band Model in One Dimension

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                Author and article information

                Journal
                Annual Review of Condensed Matter Physics
                Annu. Rev. Condens. Matter Phys.
                Annual Reviews
                1947-5454
                1947-5462
                March 31 2017
                March 31 2017
                : 8
                : 1
                : 355-406
                Affiliations
                [1 ]Faculty of Physics, Ghent University, 9000 Gent, Belgium;
                [2 ]Vienna Center for Quantum Technology, University of Vienna, 1090 Wien, Austria;
                Article
                10.1146/annurev-conmatphys-031016-025507
                accf2fa2-4c87-43e7-9ce3-e0227b892b97
                © 2017
                History

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