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      An algebraic and graph theoretical framework to study monomial dynamical systems over a finite field

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          Abstract

          An n dimensional monomial dynamical system over a finite field K is a nonlinear deterministic time discrete dynamical system with the property that each of the n component functions is a monic nonzero monomial function in n variables. In this paper we provide an algebraic and graph theoretic framework to study the dynamic properties of monomial dynamical systems over a finite field. Within this framework, characterization theorems for fixed point systems (systems in which all trajectories end in steady states) are proved. In particular, we present an algorithm of polynomial complexity to test whether a given monomial dynamical system over a finite field is a fixed point system. Furthermore, theorems that complement previous work are presented and alternative proofs to previous results are supplied.

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              On the iteration of certain quadratic maps over GF(p)

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                Author and article information

                Journal
                2007-11-08
                2008-07-30
                Article
                0711.1230
                27511eb0-409d-4e05-a954-682ee3647bf0

                http://arxiv.org/licenses/nonexclusive-distrib/1.0/

                History
                Custom metadata
                93C10
                Complex Systems, Volume 18, Number 3, 2009
                26 pages, typos removed, improved and extended. Currently under review
                math.DS nlin.CG

                Differential equations & Dynamical systems,Nonlinear & Complex systems
                Differential equations & Dynamical systems, Nonlinear & Complex systems

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