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 Izv. RAN. Ser. Mat., 2018, Volume 82, Issue 6, Pages 78–127 (Mi izv8693)

Breakdown of cycles and the possibility of opening spectral gaps in a square lattice of thin acoustic waveguides

S. A. Nazarovab

a Saint Petersburg State University
b Institute of Problems of Mechanical Engineering, Russian Academy of Sciences, St. Petersburg

Abstract: We study the spectrum of a planar square lattice of multidimensional acoustic waveguides (the Neumann problem for the Laplace operator), constructing and justifying asymptotic formulae for solutions of the spectral problem on a periodicity cell. A detailed study of corrections to expansions of eigenvalues and eigenfunctions enables us to construct a model of improved accuracy which is free from the drawbacks of the classical model on a one-dimensional graph (the skeleton of the lattice) with Kirchhoff's classical conjugation conditions at the vertices. In particular, we demonstrate the breakdown of cycles (localized eigenfunctions occurring in the classical model but almost always absent from the improved one) in the multidimensional problem. We discuss the opening of gaps and pseudogaps in the spectrum of the problem on an infinite multidimensional lattice.

Keywords: Neumann problem for the Laplace operator, lattice of thin waveguides, improved one-dimensional model, boundary layer, spectrum, thresholds, cycles, gaps.

 Funding Agency Grant Number Russian Science Foundation 17-11-01003 This work is supported by the Russian Science Foundation under grant no. 17-11-01003.

DOI: https://doi.org/10.4213/im8693

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English version:
Izvestiya: Mathematics, 2018, 82:6, 1148–1195

Bibliographic databases:

Document Type: Article
UDC: 517.956.328+517.956.8+517.958+531.33
MSC: 35P20, 35Q60, 47A75, 78A50
Revised: 13.02.2018

Citation: S. A. Nazarov, “Breakdown of cycles and the possibility of opening spectral gaps in a square lattice of thin acoustic waveguides”, Izv. RAN. Ser. Mat., 82:6 (2018), 78–127; Izv. Math., 82:6 (2018), 1148–1195

Citation in format AMSBIB
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