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Titlebook: Electromagnetic Metamaterials and Metasurfaces: From Theory To Applications; Long Li,Yan Shi,Tie Jun Cui Book 2024 Xidian University Press

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楼主: 赎罪
发表于 2025-3-26 22:22:40 | 显示全部楼层
Book 2024ar momentum, wireless communication, imaging, etc. The book provides researchers, engineers, and graduate students with a variety of new discoveries, results, information, and knowledge in the field of metamaterials and metasurfaces..
发表于 2025-3-27 04:24:47 | 显示全部楼层
https://doi.org/10.1057/9780230376779c properties for metamaterials with double negative bulk parameters are first demonstrated. Then the generalized Snell’s law for metasurfaces is elaborated. Furthermore, the digital coding method for the metamaterials/metasurfaces are discussed. Finally, the group theory is introduced to analyse the
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https://doi.org/10.1057/9781137439925(MMW) optically transparent absorber which may absorb plane wave energy with broad bandwidth, and graphene-based switchable THz absorber that enables fast electrical controlling of terahertz absorption and reflection. The various potential applications of graphene in the field of electromagnetic wav
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Elena Afanas’eva,Anatoly Golbergned and integrated into the WPT system to enhance its efficiency. The tunneling effect of equivalent epsilon-near-zero (ENZ) metamaterials in the MCR-WPT system is uncovered, and a theoretical analysis using the effective medium model is proposed to study the WPT behavior. In the second system, a ge
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,Flat Space. Fourier Analysis on ℝ,simplify the ambient energy harvester’s structure, a novel surface-mount component incorporating method is developed. The metasurface’s high-impedance characteristics and its multi-mode resonance make it possible to directly eliminate the matching network between it and the non-linear rectifier. The
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Graphene-Based Metamaterial Absorbers,(MMW) optically transparent absorber which may absorb plane wave energy with broad bandwidth, and graphene-based switchable THz absorber that enables fast electrical controlling of terahertz absorption and reflection. The various potential applications of graphene in the field of electromagnetic wav
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