Dynamic message-passing equations for models with unidirectional dynamics

Understanding and quantifying the dynamics of disordered out-of-equilibrium models is an important problem in many branches of science. Using the dynamic cavity method on time trajectories, we construct a general procedure for deriving the dynamic message-passing equations for a large class of model...

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Published inPhysical review. E, Statistical, nonlinear, and soft matter physics Vol. 91; no. 1; p. 012811
Main Authors Lokhov, Andrey Y, Mézard, Marc, Zdeborová, Lenka
Format Journal Article
LanguageEnglish
Published United States 01.01.2015
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Summary:Understanding and quantifying the dynamics of disordered out-of-equilibrium models is an important problem in many branches of science. Using the dynamic cavity method on time trajectories, we construct a general procedure for deriving the dynamic message-passing equations for a large class of models with unidirectional dynamics, which includes the zero-temperature random-field Ising model, the susceptible-infected-recovered model, and rumor spreading models. We show that unidirectionality of the dynamics is the key ingredient that makes the problem solvable. These equations are applicable to single instances of the corresponding problems with arbitrary initial conditions and are asymptotically exact for problems defined on locally treelike graphs. When applied to real-world networks, they generically provide a good analytic approximation of the real dynamics.
ISSN:1550-2376
DOI:10.1103/PhysRevE.91.012811