2016 Progress in Electromagnetic Research Symposium (PIERS) 2016
DOI: 10.1109/piers.2016.7734416
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Dyadic Green's function of the magnetic vector potential for unbounded uniaxial anisotropic media

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“…By evaluating the dyadic Green's functions of the magnetic vector potential A (DGFA) and that of the electric vector potential F (DGFE) for an uniaxially anisotropic multilayered medium and solving for the electric and magnetic flux densities numerically, the background fields E i and H i can be calculated easily. With Sommerfeld integration, the calculation of DGFA in the uniaxial anisotropic medium is expressed as [20] G AJ (r, r ) = 1 (2π)…”
Section: B Dyadic Green's Functions In a Layered Uniaxially Anisotropic Mediummentioning
confidence: 99%
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“…By evaluating the dyadic Green's functions of the magnetic vector potential A (DGFA) and that of the electric vector potential F (DGFE) for an uniaxially anisotropic multilayered medium and solving for the electric and magnetic flux densities numerically, the background fields E i and H i can be calculated easily. With Sommerfeld integration, the calculation of DGFA in the uniaxial anisotropic medium is expressed as [20] G AJ (r, r ) = 1 (2π)…”
Section: B Dyadic Green's Functions In a Layered Uniaxially Anisotropic Mediummentioning
confidence: 99%
“…k is the wave vector, Z A and Z a A are the electric wave matrix and its adjoint, and |Z A | is determinant of Z A . More detailed derivation can be referred to [20].…”
Section: B Dyadic Green's Functions In a Layered Uniaxially Anisotropic Mediummentioning
confidence: 99%
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