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用于宽带色散工程的电磁超表面中的二阶德拜弛豫

2nd-Order Debye relaxation in electromagnetic metasurfaces for wideband dispersion engineering.

作者信息

Fu Xinmin, Han Yajuan, Wang Jiafu, Yang Jie, Sun Yong, Ding Chang, Jia Yuxiang, Wang Jun, Qu Shaobo, Cui Tiejun

机构信息

Shaanxi Key Laboratory of Artificially-Structured Functional Materials and Devices, Air Force Engineering University, 710051, Xi'an, China.

Suzhou Laboratory, 215000, Suzhou, Jiangsu, China.

出版信息

Light Sci Appl. 2025 Mar 27;14(1):143. doi: 10.1038/s41377-025-01813-1.

Abstract

In dielectric physics, electromagnetic (EM) properties of dielectrics arise from several important polarization mechanisms that can be described by Debye, Drude or Lorentz models. Metamaterials, as well as their 2D counterparts-metasurfaces, can exhibit bizarre EM parameters such as negative permittivity, whereas polarization mechanisms leading to such have long been discussed in dielectric physics. Drude and Lorentz's models are usually used in metamaterial design, whereas the Debye model is almost absent, though it is so important in dielectric physics. This leaves an unreconciled gap between the dielectric physics and metamaterials. In this paper, we explore Debye relaxations in metasurfaces for the sake of wideband dispersion engineering. By analyzing two fundamental resonance modes of a typical meta-atom, we first show that the reflection phase experiences 1-order Debye relaxation under the two resonances, although they are typically Lorentzian. More importantly, the two resonances can be tailored to form a 2nd-order Debye relaxation process so as to achieve smooth phase variations in between them, which lays a solid foundation for wideband dispersion engineering. As proof of concept, we propose a quad-elliptical-arc (QEA) structure as the meta-atom, whose dispersion can be customized by tailoring the 2nd-order Debye relaxation. With this meta-atom, we demonstrated two metasurface prototypes that can achieve chromatic and achromatic focusing, respectively, in the entire X band (8.0-12.0 GHz), showcasing the powerful capacity of wideband dispersion engineering. This work digs out relaxation processes in metamaterials and opens up new territories for metamaterial research, which may find wide applications in wideband devices and systems.

摘要

在介电物理学中,电介质的电磁(EM)特性源于几种重要的极化机制,这些机制可用德拜、德鲁德或洛伦兹模型来描述。超材料及其二维对应物——超表面,可展现出诸如负介电常数等奇异的电磁参数,而导致这种情况的极化机制在介电物理学中早已被讨论过。德鲁德和洛伦兹模型通常用于超材料设计,而德拜模型几乎未被涉及,尽管它在介电物理学中非常重要。这在介电物理学和超材料之间留下了一个未调和的差距。在本文中,为了进行宽带色散工程,我们探索了超表面中的德拜弛豫。通过分析一个典型超原子的两种基本共振模式,我们首先表明,在这两种共振下,反射相位经历了一阶德拜弛豫,尽管它们通常是洛伦兹型的。更重要的是,可以对这两种共振进行调整,以形成二阶德拜弛豫过程,从而在它们之间实现平滑的相位变化,这为宽带色散工程奠定了坚实的基础。作为概念验证,我们提出了一种四椭圆弧(QEA)结构作为超原子,其色散可通过调整二阶德拜弛豫来定制。利用这种超原子,我们展示了两个超表面原型,它们分别可以在整个X波段(8.0 - 12.0 GHz)实现彩色和消色差聚焦,展示了宽带色散工程的强大能力。这项工作挖掘出了超材料中的弛豫过程,为超材料研究开辟了新领域,这可能在宽带器件和系统中得到广泛应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc9c/11950317/301214063ef6/41377_2025_1813_Fig3_HTML.jpg

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