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- W4308102013 abstract "The field of metamaterials combines concepts from solid-state physics, electrodynamics, and materials science. This chapter gives a short theoretical background to describe the most important characteristics of metamaterials, followed by a review of the state of art in material and device development. It presents the overview of some typical ferrite based bandgap structures and devices, operating in the microwave range. To describe the electromagnetic behavior, i.e. the scattering of electromagnetic waves (EMWs) as a result of interaction of an incident EMW with a composite medium, the knowledge of the constituent parameters of the medium is necessary. The material parameters for the magnetophotonic crystal and the double-negative index metamaterial are essential in order to solve the nonlinear Maxwell's equations together with the Landau–Lifshitz equation to model and design materials and devices based on these periodic structures." @default.
- W4308102013 created "2022-11-08" @default.
- W4308102013 creator A5062754261 @default.
- W4308102013 date "2022-10-28" @default.
- W4308102013 modified "2023-09-28" @default.
- W4308102013 title "Ferrite‐Based Electronic Bandgap Heterostructures and Metamaterials" @default.
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