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      Unifying model for random matrix theory in arbitrary space dimensions

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          Theory of spin glasses

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            Asymptotic analysis of the stochastic block model for modular networks and its algorithmic applications

            , , (2013)
            In this paper we extend our previous work on the stochastic block model, a commonly used generative model for social and biological networks, and the problem of inferring functional groups or communities from the topology of the network. We use the cavity method of statistical physics to obtain an asymptotically exact analysis of the phase diagram. We describe in detail properties of the detectability/undetectability phase transition and the easy/hard phase transition for the community detection problem. Our analysis translates naturally into a belief propagation algorithm for inferring the group memberships of the nodes in an optimal way, i.e., that maximizes the overlap with the underlying group memberships, and learning the underlying parameters of the block model. Finally, we apply the algorithm to two examples of real-world networks and discuss its performance.
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              Thermal conductivity of glassy materials and the “boson peak"

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                Author and article information

                Journal
                PLEEE8
                Physical Review E
                Phys. Rev. E
                American Physical Society (APS)
                2470-0045
                2470-0053
                March 2018
                March 14 2018
                : 97
                : 3
                Article
                10.1103/PhysRevE.97.032113
                2be24b52-c279-4ead-af46-a4530e30deef
                © 2018

                https://link.aps.org/licenses/aps-default-license

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