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      Towards real-world complexity: an introduction to multiplex networks

      , ,
      The European Physical Journal B
      Springer Science and Business Media LLC

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          Threshold Models of Collective Behavior

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            Multiferroics: a magnetic twist for ferroelectricity.

            Magnetism and ferroelectricity are essential to many forms of current technology, and the quest for multiferroic materials, where these two phenomena are intimately coupled, is of great technological and fundamental importance. Ferroelectricity and magnetism tend to be mutually exclusive and interact weakly with each other when they coexist. The exciting new development is the discovery that even a weak magnetoelectric interaction can lead to spectacular cross-coupling effects when it induces electric polarization in a magnetically ordered state. Such magnetic ferroelectricity, showing an unprecedented sensitivity to ap plied magnetic fields, occurs in 'frustrated magnets' with competing interactions between spins and complex magnetic orders. We summarize key experimental findings and the current theoretical understanding of these phenomena, which have great potential for tuneable multifunctional devices.
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              Assortative Mixing in Networks

              M. Newman (2002)
              A network is said to show assortative mixing if the nodes in the network that have many connections tend to be connected to other nodes with many connections. Here we measure mixing patterns in a variety of networks and find that social networks are mostly assortatively mixed, but that technological and biological networks tend to be disassortative. We propose a model of an assortatively mixed network, which we study both analytically and numerically. Within this model we find that networks percolate more easily if they are assortative and that they are also more robust to vertex removal.
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                Author and article information

                Journal
                The European Physical Journal B
                Eur. Phys. J. B
                Springer Science and Business Media LLC
                1434-6028
                1434-6036
                February 2015
                February 16 2015
                February 2015
                : 88
                : 2
                Article
                10.1140/epjb/e2015-50742-1
                c89199aa-aff5-4565-99b3-dee92265ec58
                © 2015

                http://www.springer.com/tdm

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