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近场区域中的磁性超表面特性。

Magnetic metasurfaces properties in the near field regions.

作者信息

Brizi Danilo, Monorchio Agostino

机构信息

Department of Information Engineering, University of Pisa, 56122, Pisa, Italy.

Consorzio Nazionale Interuniversitario per le Telecomunicazioni (CNIT), 43124, Parma, Italy.

出版信息

Sci Rep. 2022 Feb 28;12(1):3258. doi: 10.1038/s41598-022-07378-y.

Abstract

In this paper, we present a general equivalent-circuit interpretation of finite magnetic metasurfaces interacting with an arbitrary arrangement of RF coils operating in near-field regime. The developed model allows to derive a physical interpretation of the interactions between the metasurface and the surrounding RF coils, both transmitting and receiving. Indeed, especially for near-field applications, the metasurface presence modifies the behavior of each RF coil differently, due to the specific reciprocal interactions. Hence, the proposed approach introduces a source-related complex magnetic permeability matrix, overcoming the traditional bulk definition. To prove the model validity against full-wave simulations, we present two significant test cases, commonly used in practical applications. The former is represented by the simple metasurface-coil arrangement from which important and fundamental considerations can be drawn. The latter system is composed by a transmitting and a receiving coil with a metasurface in between; detailed explanations on the metasurface interactions with both the RF coils are developed. Finally, we also achieved an excellent agreement between the numerical results and the measurements obtained through fabricated prototypes. In summary, the circuit interpretation herein presented, in addition to the rigorous electromagnetic theoretical approaches already appeared in the open literature, reveals useful in providing quantitative, practical, and easy-to-handle guidelines for the design and physical understanding of finite magnetic metasurfaces interacting with arbitrary RF coils arrangements in the near-field regime.

摘要

在本文中,我们给出了有限磁超表面与工作在近场区域的任意排列射频线圈相互作用的一般等效电路解释。所建立的模型能够对超表面与周围发射和接收射频线圈之间的相互作用进行物理解释。实际上,特别是对于近场应用,由于特定的互易相互作用,超表面的存在会以不同方式改变每个射频线圈的行为。因此,所提出的方法引入了一个与源相关的复磁导率矩阵,克服了传统的体定义。为了针对全波模拟验证模型的有效性,我们给出了两个在实际应用中常用的重要测试案例。前者由简单的超表面 - 线圈排列表示,从中可以得出重要且基本的结论。后者系统由一个发射线圈和一个接收线圈组成,中间有一个超表面;详细阐述了超表面与两个射频线圈的相互作用。最后,我们还在数值结果与通过制作的原型获得的测量结果之间取得了极好的一致性。总之,本文提出的电路解释,除了公开文献中已有的严格电磁理论方法外,对于为近场区域中与任意射频线圈排列相互作用的有限磁超表面的设计和物理解提供定量、实用且易于操作的指导方针很有用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/143c/8885705/e9d5efacb22b/41598_2022_7378_Fig1_HTML.jpg

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