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      Structural stability of a dynamical system near a non-hyperbolic fixed point

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          Abstract

          We prove structural stability under perturbations for a class of discrete-time dynamical systems near a non-hyperbolic fixed point. We reformulate the stability problem in terms of the well-posedness of an infinite-dimensional nonlinear ordinary differential equation in a Banach space of carefully weighted sequences. Using this, we prove existence and regularity of flows of the dynamical system which obey mixed initial and final boundary conditions. The class of dynamical systems we study, and the boundary conditions we impose, arise in a renormalisation group analysis of the 4-dimensional weakly self-avoiding walk and the 4-dimensional n-component \(|\varphi|^4\) spin model.

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          Construction and Borel summability of infrared ? 4 4 by a phase space expansion

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            A rigorous control of logarithmic corrections in four-dimensional ?4 spin systems

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              A rigorous control of logarithmic corrections in four-dimensional ?4 spin systems

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                Author and article information

                Journal
                11 November 2012
                2014-04-29
                Article
                10.1007/s00023-014-0338-0
                1211.2477
                76a52296-a6de-4f0f-956b-29c2c2d08255

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

                History
                Custom metadata
                37C75, 82B28 (Primary), 37N20, 82B41 (Secondary)
                Ann. Henri Poincar\'e, 16:1033--1065, (2015)
                31 pages, to appear in Ann. Henri Poincare
                math.DS math-ph math.MP math.PR

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