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Izvestiya of Saratov University. Mathematics. Mechanics. Informatics, 2012, Volume 12, Issue 2, Pages 68–81
DOI: https://doi.org/10.18500/1816-9791-2012-12-2-68-81
(Mi isu299)
 

Mechanics

Upper and low bounds of azimuthal numbers related to elementary wave functions of an elliptic cylinder

V. A. Kovaleva, Yu. N. Radayevb

a Moscow City Government University of Management, Chair of Applied Mathematics
b Institute for Problems in Mechanics of RAS, Moscow
References:
Abstract: Numerical and analytical aspects of generating $2\pi$-periodic solutions of the angular Mathieu equation obtained for the circumferential harmonics of an elliptic cylinder and localization problem for the Mathieu eigenvalues and corresponding azimuthal numbers are considred. Those are required in usual procedure of constructing the elliptic cylinder elementary wave functions playing a very important role in mathematical physics. The Sturm–Liouville eigenvalue problem for angular Mathieu equation is reformulated as the algebraic eigenvalue problem for a infinite linear self-adjoint pentadiagonal matrix operator acting in the complex bi-infinite sequence space $l_2$. The matrix operator then can be splitted into a diagonal matrix and a infinite symmetric doubly stochastic matrix. Simple algorithms aimed at computation of the Mathieu eigenvalues and associated angular harmonics are discussed. The most symmetric forms and equations mostly known from the contemporary theory of the Mathieu equation are systematically used. Some of them are specially derived for the case and seem to be new in the theory of the angular Mathieu equation. An extension of the azimuthal numbers notion to the case of elastic and thermoelastic waves propagating in a long elliptic waveguide is proposed. Estimations of upper and low bounds for the angular Mathieu eigenvalues and azimuthal numbers are obtained by the aid of the Gerschgorin theorems and more accurate ones by the Cassini ovals technique.
Key words: Mathieu equation, eigenvalue, azimuthal number, spectral problem, wavenumber, wave function, diagonalization, Gerschgorin disk (circle), Cassini oval, doubly stochastic matrix.
Bibliographic databases:
Document Type: Article
UDC: 539.374
Language: Russian
Citation: V. A. Kovalev, Yu. N. Radayev, “Upper and low bounds of azimuthal numbers related to elementary wave functions of an elliptic cylinder”, Izv. Saratov Univ. Math. Mech. Inform., 12:2 (2012), 68–81
Citation in format AMSBIB
\Bibitem{KovRad12}
\by V.~A.~Kovalev, Yu.~N.~Radayev
\paper Upper and low bounds of azimuthal numbers related to elementary wave functions of an elliptic cylinder
\jour Izv. Saratov Univ. Math. Mech. Inform.
\yr 2012
\vol 12
\issue 2
\pages 68--81
\mathnet{http://mi.mathnet.ru/isu299}
\crossref{https://doi.org/10.18500/1816-9791-2012-12-2-68-81}
\elib{https://elibrary.ru/item.asp?id=17747121}
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    Известия Саратовского университета. Новая серия. Серия Математика. Механика. Информатика
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    Abstract page:416
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    References:65
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