Bifurcations in Nagumo Equations on Graphs and Fiedler Vectors
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作者:
Petr Stehlík
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机构:University of West Bohemia,Department of Mathematics and NTIS, New Technologies for the Information Society, Faculty of Applied Sciences
Petr Stehlík
Vladimír Švígler
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机构:University of West Bohemia,Department of Mathematics and NTIS, New Technologies for the Information Society, Faculty of Applied Sciences
Vladimír Švígler
Jonáš Volek
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机构:University of West Bohemia,Department of Mathematics and NTIS, New Technologies for the Information Society, Faculty of Applied Sciences
Jonáš Volek
机构:
[1] University of West Bohemia,Department of Mathematics and NTIS, New Technologies for the Information Society, Faculty of Applied Sciences
来源:
Journal of Dynamics and Differential Equations
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2023年
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35卷
关键词:
Nagumo equation;
Dynamical systems on graphs;
Bifurcations;
Algebraic connectivity;
Fiedler vectors;
35K57;
39A12;
39A28;
05C40;
D O I:
暂无
中图分类号:
学科分类号:
摘要:
Reaction-diffusion equations serve as a basic framework for numerous dynamic phenomena like pattern formation and travelling waves. Spatially discrete analogues of Nagumo reaction-diffusion equation on lattices and graphs provide insights how these phenomena are strongly influenced by the discrete and continuous spatial structures. Specifically, Nagumo equations on graphs represent rich high dimensional problems which have an exponential number of stationary solutions in the case when the reaction dominates the diffusion. In contrast, for sufficiently strong diffusion there are only three constant stationary solutions. We show that the emergence of the spatially heterogeneous solutions is closely connected to the second eigenvalue of the Laplacian matrix of a graph, the algebraic connectivity. For graphs with simple algebraic connectivity, the exact type of bifurcation of these solutions is implied by the properties of the corresponding eigenvector, the so-called Fiedler vector.