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Ferrite Film Loaded Frequency Selective Metamaterials for Sub-GHz Applications

机译:适用于Sub-GHz应用的铁氧体薄膜负载频率选择超材料

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摘要

Electromagnetic metamaterials are constructed with sub-wavelength structures that exhibit particular electromagnetic properties under a certain frequency range. Because the form-factor of the substructures has to be comparable to the wavelength of the operating frequency, few papers have discussed the metamaterials under GHz frequency. In this paper, we developed an innovative method to reduce the resonant frequency of metamaterals. By integrating the meta-structures with ferrite materials of higher permeability, the cell size of the meta-structure can be scaled down. This paper describes the methodology, design, and development of low-profile GHz ferrite loaded metamaterials. A ferrite film with a permeability of 20 could reduce the resonant frequency of metamaterials by up to 50%. A prototype has been fabricated and the measurement data align well with the simulation results. Because of the lowered operational frequency, the proposed ferrite loaded metamaterials offer more flexibility for various sub-GHz microwave applications, such as cloaks, absorbers, and frequency selective surfaces.
机译:电磁超材料由具有一定波长范围内特定电磁性能的亚波长结构构成。因为子结构的形状因数必须与工作频率的波长相当,所以很少有论文讨论过GHz频率下的超材料。在本文中,我们开发了一种创新的方法来降低金属材料的共振频率。通过将元结构与具有较高磁导率的铁氧体材料集成在一起,可以缩小元结构的晶胞尺寸。本文介绍了低剖面GHz铁氧体负载超材料的方法,设计和开发。磁导率为20的铁氧体薄膜可以将超材料的共振频率降低多达50%。已制造出原型,测量数据与仿真结果吻合良好。由于降低了工作频率,因此建议的铁氧体负载超常材料为各种低于GHz的微波应用(如斗篷,吸收体和频率选择表面)提供了更大的灵活性。

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