Application of the discrete Fourier transform to solving the Cauchy integral equation

The uniquely solvable system of the Cauchy integral equation of the first kind and index 1 and an additional integral condition is treated. Such a system arises, for example, when solving the skew derivative problem for the Laplace equation outside an open arc in a plane. This problem models the ele...

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Veröffentlicht in:Journal of computational and applied mathematics 2011, Vol.235 (5), p.1317-1325
Hauptverfasser: Kolybasova, V.V., Krutitskii, P.A., Prozorov, K.V., Vainikko, G.
Format: Artikel
Sprache:eng
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Zusammenfassung:The uniquely solvable system of the Cauchy integral equation of the first kind and index 1 and an additional integral condition is treated. Such a system arises, for example, when solving the skew derivative problem for the Laplace equation outside an open arc in a plane. This problem models the electric current from a thin electrode in a semiconductor film placed in a magnetic field. A fast and accurate numerical method based on the discrete Fourier transform is proposed. Some computational tests are given. It is shown that the convergence is close to exponential.
ISSN:0377-0427
1879-1778
DOI:10.1016/j.cam.2010.08.017