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      Equivalence between a generalized dendritic network and a set of one-dimensional networks as a ground of linear dynamics

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      The Journal of Chemical Physics
      AIP Publishing

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          Quantum walks: a comprehensive review

          Quantum walks, the quantum mechanical counterpart of classical random walks, is an advanced tool for building quantum algorithms that has been recently shown to constitute a universal model of quantum computation. Quantum walks is now a solid field of research of quantum computation full of exciting open problems for physicists, computer scientists, mathematicians and engineers. In this paper we review theoretical advances on the foundations of both discrete- and continuous-time quantum walks, together with the role that randomness plays in quantum walks, the connections between the mathematical models of coined discrete quantum walks and continuous quantum walks, the quantumness of quantum walks, a summary of papers published on discrete quantum walks and entanglement as well as a succinct review of experimental proposals and realizations of discrete-time quantum walks. Furthermore, we have reviewed several algorithms based on both discrete- and continuous-time quantum walks as well as a most important result: the computational universality of both continuous- and discrete- time quantum walks.
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            Dendrimers in biomedical applications—reflections on the field

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              Energy Transfer in Dendritic Macromolecules:  Molecular Size Effects and the Role of an Energy Gradient

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                Author and article information

                Journal
                The Journal of Chemical Physics
                The Journal of Chemical Physics
                AIP Publishing
                0021-9606
                1089-7690
                May 28 2015
                May 28 2015
                : 142
                : 20
                : 204112
                Affiliations
                [1 ]Department of Theoretical and Computational Molecular Science, Institute for Molecular Science, Okazaki 444-8585, Japan
                Article
                10.1063/1.4921730
                ed60d42a-19e7-4712-9a40-6138ae3816da
                © 2015
                History

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