Complete Nonuniform Asymptotic Expansion of Sommerfeld Integral for Dielectric Half-Space

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초록

Generally, the Sommerfeld integral (SI) for a dielectric half-space is approximated based on the steepest descent method. A higher order approximation of the integral requires higher order derivatives of the integrand in the steepest descent path in the complex domain, whose explicit formulation may be cumbersome. Recently, a new finite-range integral representation of the SI has been proposed, whose integrand is written in terms of the SI for an impedance half-plane. Based on the known complete nonuniform asymptotic expansion of the SI for an impedance half-plane, the complete nonuniform asymptotic expansion can be analytically formulated for the dielectric half-space. Moreover, the completeness is mathematically proven such that the expansion satisfies the recurrence relation for the Wilcox expansion. The accuracy of the proposed expansion is numerically examined for several propagation scenarios. Furthermore, a numerical procedure is proposed to calculate the higher order terms of the expansion by partially using the impedance approximation for a large relative permittivity of the half-space.

키워드

DielectricsImpedancePermittivityReflection coefficientClosed-form solutionsSymbolsStandardsComplete nonuniform asymptotic expansiondielectric half-spaceSommerfeld integral (SI)CLOSED-FORM EXPRESSIONDYADIC GREENS-FUNCTIONEXACT IMAGE THEORYIMPEDANCE PLANEHERTZIAN DIPOLEPROPAGATIONEXTENSIONSEARTH
제목
Complete Nonuniform Asymptotic Expansion of Sommerfeld Integral for Dielectric Half-Space
저자
Koh, Il-Suek
DOI
10.1109/TAP.2023.3244007
발행일
2023-04
유형
Article
저널명
IEEE Transactions on Antennas and Propagation
71
4
페이지
3571 ~ 3580