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Broadband and thin magnetic absorber with non-Foster metasurface for admittance matching

机译:具有非福斯特超表面的宽带薄磁吸收体用于导纳匹配

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摘要

One of the long-standing and challenging problems in microwave engineering is the realization of ultra-wideband absorption using extremely-thin structures. Magnetic material can facilitate thickness reduction for microwave absorbers but also bring inherent narrowband admittance matching conundrum originating from its frequency-dispersive permeability and high permittivity. In this paper, we propose a simple and yet effective solution based on the concept of admittance matching with non-Foster metasurface (NFMS). Building on this concept, an ultra-wideband and extremely-thin magnetic absorber is achieved, with a simple structure consisting of a conductor-backed magnetic sheet (CMBS) coated by a NFMS. The NFMS with negatively inductive susceptance can properly cancel its positively frequency-dispersive counterpart from the CMBS so that constructive interference near the absorber can be obtained over a wide frequency band. Furthermore, the NFMS will compensate the surface conductance required for maximum incident power dissipation. As an example, we demonstrate an absorber with one-frequency decade bandwidth and a thickness of only 1/255 wavelength at the lowest operation frequency. The proposed concept enables versatile admittance matching techniques using a single-layered and has the potential to be used in the development of interesting low-profile and broadband microwave devices.
机译:微波工程中长期存在的挑战性问题之一是使用极薄的结构实现超宽带吸收。磁性材料可以简化微波吸收器的厚度,但也带来固有的窄带导纳匹配难题,这是由于其频率色散导磁率和高介电常数引起的。在本文中,我们基于与非福斯特金属表面(NFMS)的导纳匹配的概念,提出了一种简单而有效的解决方案。在此概念的基础上,可以实现一种超宽带,极薄的磁吸收器,其结构简单,由涂有NFMS的背衬导体的磁片(CMBS)组成。具有负感性电纳的NFMS可以适当地从CMBS中消除其正频率分散的对应物,从而可以在较宽的频带上获得吸收体附近的相长干涉。此外,NFMS将补偿最大入射功率耗散所需的表面电导。作为示例,我们演示了一种吸收器,该吸收器具有十倍频带宽,并且在最低工作频率下的厚度仅为1/255波长。所提出的概念使使用单层的通用导纳匹配技术成为可能,并且有潜力用于有趣的低调和宽带微波设备的开发中。

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