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Wireless energy transfer between anisotropic metamaterials shells

机译:各向异性超材料壳之间的无线能量传输

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The behavior of strongly coupled Radial Photonic Crystals shells is investigated as a potential alternative to transfer electromagnetic energy wirelessly. These sub-wavelength resonant microstructures, which are based on anisotropic metamaterials, can produce efficient coupling phenomena due to their high quality factor. A configuration of selected constitutive parameters (permittivity and permeability) is analyzed in terms of its resonant characteristics. The coupling to loss ratio between two coupled resonators is calculated as a function of distance, the maximum (in excess of 300) is obtained when the shells are separated by three times their radius. Under practical conditions an 83% of maximum power transfer has been also estimated.
机译:研究了强耦合径向光子晶体壳的行为,将其作为无线传输电磁能量的潜在替代方法。这些基于各向异性超材料的亚波长共振微结构,由于其高品质因数,可以产生有效的耦合现象。根据其共振特性分析所选本构参数(介电常数和磁导率)的配置。计算两个耦合的谐振器之间的耦合损耗比,作为距离的函数,当壳分开其半径的三倍时,可获得最大值(超过300)。在实际条件下,还估计了最大功率传输的83%。

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