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Titlebook: Handbook of Metamaterial-Derived Frequency Selective Surfaces; Shiv Narayan,Arun Kesavan Reference work 2022 Springer Nature Singapore Pte

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Metamaterial-FSS for the Design of High-Performance Radomes. The EM performance analysis of several metamaterial FSS unit cells has been carried out based on TLTMM method and validated using full-wave analysis method. A unique left-handed metamaterial has been introduced based on the theory of tightly coupled resonators for narrow X-band application consis
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Metamaterial-based High-Performance Radar Absorbing Structureucing the design limitations of conventional absorbers. The reason for unity absorption in a metamaterial absorber has been explained based on different absorption mechanisms and different types of losses associated with the structure. A simulative study on the role of dielectric loss tangent on the
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Graphene-Based Tunable Metamaterial-FSS RASional materials. MMs possess negative permittivity and/or permeability; the combination of both negative is not found in conventional materials. The shape, dimensions, and materials used in the MM determine its ultimate working frequency and response. Owing to their peculiar properties, MMs have fou
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Active Metamaterial Frequency Selective Surface (FSS) Based Tunable Radar Absorbing Structure (RAS)absorbing structures (RASs). Passive absorbing structures offer limited post-fabrication flexibility and cannot be used for any multifunctional characteristic. In contrast, an active RAS can be exploited for manifold applications by regulating the external control. Further, fabrication and installat
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