Calculation of a point source radiation in a flat or non-flat stratified background: an alternative to Sommerfeld integrals
Author(s) -
Salim Boutami,
J. Hazart
Publication year - 2010
Publication title -
the european physical journal applied physics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.216
H-Index - 49
eISSN - 1286-0050
pISSN - 1286-0042
DOI - 10.1051/epjap/2010072
Subject(s) - computation , point source , generalization , rotation formalisms in three dimensions , boundary (topology) , mathematical analysis , point (geometry) , position (finance) , radiation , boundary value problem , basis (linear algebra) , physics , mathematics , geometry , optics , algorithm , economics , finance
International audienceIn this paper, we present an alternative method to Sommerfeld integrals for the calculation of a point source radiation in a multilayered background, based on the method of auxiliary sources, also called fictitious sources method. The method lies upon the decomposition of reflected and transmitted fields on a basis of secondary sources, which amplitudes are determined by applying boundary conditions at each multilayer interface, solving an over-determined system of equations. We present a generalization of the classical FSM to open stratified domains, with arbitrary number of layers and arbitrary position of the point source in the multilayer. Two and three dimensional formalisms are proposed, and compared to exact Sommerfeld formulation. Computation time reduction factors as high as 100 are obtained for 2D problems. Moreover, this method enables the study of non-flat interfaces, which is not possible with Sommerfeld approach. This method can be used for example in order to determine radiation efficiency of emitting devices, or it can be integrated in discrete source type electromagnetic methods for calculation of scattering by a complex target
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