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Article type: Research Article
Authors: Huang, Min-Hai; | Zhao, Yu-Qiu;
Affiliations: College of Mathematics and Information Sciences, Sun Yat-sen University, Zhaoqing, China | Department of Mathematics, Sun Yat-sen University, GuangZhou, China
Note: [] Corresponding author: Yu-Qiu Zhao, Department of Mathematics, Sun Yat-sen University, GuangZhou 510275, China. E-mail: [email protected]
Abstract: We demonstrate an approach to derive uniform and point-wise asymptotic formulas based on Fokas' transform method. To this aim, we study the high-frequency uniform asymptotics for the solution of the Helmholtz equation, in a quarter plane and subject to a specific Neumann condition. The analysis is based on the integral representation of the solution derived via Fokas' transform method. In the case of piecewise constant boundary data, full point-wise asymptotic expansions of the solution are obtained by using the method of steepest descents for definite integrals. A uniform asymptotic expansion, holding in the whole quadrant, is also derived in terms of the complementary error function. The uniform expansion exhibits smooth transitions across certain critical vertical lines, along which the point-wise asymptotic approximations have jumps.
Keywords: high-frequency asymptotics, Fokas' transform method, method of steepest descents, Helmholtz equation, Neumann condition
DOI: 10.3233/ASY-121160
Journal: Asymptotic Analysis, vol. 84, no. 1-2, pp. 1-15, 2013
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