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      Finding eigenvalues of holomorphic Fredholm operator pencils using boundary value problems and contour integrals

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          Abstract

          Investigating the stability of nonlinear waves often leads to linear or nonlinear eigenvalue problems for differential operators on unbounded domains. In this paper we propose to detect and approximate the point spectra of such operators (and the associated eigenfunctions) via contour integrals of solutions to resolvent equations. The approach is based on Keldysh' theorem and extends a recent method for matrices depending analytically on the eigenvalue parameter. We show that errors are well-controlled under very general assumptions when the resolvent equations are solved via boundary value problems on finite domains. Two applications are presented: an analytical study of Schr\"odinger operators on the real line as well as on bounded intervals and a numerical study of the FitzHugh-Nagumo system. We also relate the contour method to the well-known Evans function and show that our approach provides an alternative to evaluating and computing its zeroes.

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          Most cited references24

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          Error and Perturbation Bounds for Subspaces Associated with Certain Eigenvalue Problems

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            Exponential dichotomies and transversal homoclinic points

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              An integral method for solving nonlinear eigenvalue problems

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                Author and article information

                Journal
                15 October 2012
                Article
                1210.3952
                eb93e4de-b6e1-4949-8593-08bb415f7a56

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

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                Custom metadata
                47A56, 47J10, 34D09, 34L16
                Preprint 12099, CRC701, Bielefeld University
                46 pages, 7 figures
                math.NA math.AP

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