Local multiple traces formulation for high-frequency scattering problems
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摘要
We present an efficient method to solve high-frequency scattering problems by heterogeneous penetrable objects in two dimensions. This is achieved by extending the so-called Local Multiple Traces Formulation, introduced recently by Hiptmair and Jerez-Hanckes, to purely spectral discretizations employing weighted Chebyshev polynomials. Together with regularization strategies to handle boundary integral operators singularities, matrix entries are quickly computed via the Fast Fourier Transform. The resulting Fredholm first-kind formulation is free from spurious resonances, and though ill-conditioned, it possesses built-in Calderón-type preconditioners. Numerical results obtained for different settings validate our claims and greatly motivate future research in this direction.
论文关键词:Boundary integral equations,Spectral elements,Multiple traces formulation,Preconditioning,High-frequency scattering
论文评审过程:Received 18 September 2014, Revised 30 November 2014, Available online 9 January 2015, Version of Record 27 May 2015.
论文官网地址:https://doi.org/10.1016/j.cam.2014.12.045