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- W2017451512 abstract "Vector potentials are frequently utilized in the electromagnetic analysis of problems involving simple (i.e., linear, homogeneous, and isotropic) media. In recent decades, various scalar and vector potential formulations have been investigated for the analysis of anisotropic and bianisotropic media. This interest has been greatly influenced by the significant developments in material fabrication capability and the phenomena associated with complex media. Uniaxial anisotropic media are particularly interesting from an application viewpoint due to the relative ease of manufacturing this type of material.The goals of this paper are to first briefly review a scalar potential formulation for a magnetically and electrically uniaxial anisotropic medium. Next, expected and unexpected depolarizing dyad contributions are identified in the scalar potential development. It is discussed, from a physical viewpoint, why the unexpected depolarizing dyad should not exist. Based on this insight, the final goal is to demonstrate via two alternative methods that the unexpected depolarizing dyad is actually removable, thus leading to a physically and mathematically consistent theory." @default.
- W2017451512 created "2016-06-24" @default.
- W2017451512 creator A5012196419 @default.
- W2017451512 date "2013-07-01" @default.
- W2017451512 modified "2023-09-25" @default.
- W2017451512 title "Uniaxial depolarizing dyad artifact removal via spectral domain analysis" @default.
- W2017451512 doi "https://doi.org/10.1109/usnc-ursi.2013.6715469" @default.
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