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Diffraction coefficient for a half-plane with anisotropic conductivity

Diffraction coefficient for a half-plane with anisotropic conductivity

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The diffraction of obliquely incident plane waves by a half-plane having anisotropic conductivity is investigated. The half-plane is assumed to be perfectly conducting in one direction and to have finite conductivity in the transverse direction. The material of the half-plane is simulated by a resistive-type boundary condition with the resistivity being a constant tensor. By using the Fourier transform technique, the problem is formulated into a pair of simultaneous Wiener–Hopf equations which are decoupled by means of a polynomial transformation and then solved by standard techniques.

References

    1. 1)
      • T.B.A. Senior , P.L.E. Uslenghi . (1978) Some problems involving imperfect half planes, Electromagnetic scattering.
    2. 2)
      • T.B.A. Senior . Half-plane edge diffraction. Radio Sci. , 645 - 650
    3. 3)
      • J.L. Volakis , T.B.A. Senior . Simple expressions for a functionoccurring in diffraction theory. IEEE Trans.
    4. 4)
      • T.B.A. Senior . Skew incidence on a dielectric half-plane. Electromagnetics , 187 - 200
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