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Wave Propagation in Composites of Plasma and Metamaterials with Negative Permittivity and Permeability.等离子体与具有负介电常数和磁导率的超材料复合材料中的波传播
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轻物质领域:超材料之父约翰·彭德里爵士教授谈到了超材料的未来。

Light People: Prof. Sir John Pendry, father of metamaterials, spoke about the future of meta.

作者信息

Guo Chenzi, Luo Yu

机构信息

Changchun Institute of Optics, Fine Mechanics and Physics, Chinese Academy of Sciences, Changchun, China.

School of Electrical and Electronic Engineering, Nanyang Technological University, Singapore, Singapore.

出版信息

Light Sci Appl. 2023 Feb 20;12(1):45. doi: 10.1038/s41377-023-01082-w.

DOI:10.1038/s41377-023-01082-w
PMID:36805587
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9939413/
Abstract

When consulting with the Marconi company in 1995, Prof. Sir John Pendry uncovered exotic structures that gave negative permittivity and negative permeability, respectively. In 1999, Prof. Pendry introduced split ring resonators (SRRs), and later in 2000, Prof. David Smith and Prof. Sheldon Schultz experimentally showed that periodic array of SRRs and continuous wires previously proposed by Prof. Pendry could exhibit simultaneously negative values of effective permeability and permittivity at the same frequency. Shortly after, Prof. Pendry revealed that a slab of material with simultaneous negative permittivity and permeability could challenge the Abbé diffraction limit on traditional lenses and focus all Fourier components of a point object onto a perfect image, leading to a "perfect lens". The vision of a perfect lens attracted extensive research interest and opened a new field which was later widely known as metamaterials. Now two decades on, the explosion of metamaterials has revolutionized numerous researches in physics, materials science, chemistry, and engineering. To shed light on the research direction of metamaterials, Light: Science & Applications invited Sir John Pendry, father and living legend of metamaterials, to speak about the future of metamaterials. The original interview can be accessed in Supplementary video.

摘要

1995年,约翰·彭德里爵士教授在与马可尼公司磋商时,发现了分别具有负介电常数和负磁导率的奇异结构。1999年,彭德里教授引入了分裂环谐振器(SRRs),随后在2000年,大卫·史密斯教授和谢尔登·舒尔茨教授通过实验表明,彭德里教授先前提出的SRRs周期性阵列和连续导线在同一频率下可同时呈现有效磁导率和介电常数的负值。不久之后,彭德里教授揭示,一种同时具有负介电常数和负磁导率的材料平板可能会挑战传统透镜的阿贝衍射极限,并将点物体的所有傅里叶分量聚焦到一个完美图像上,从而形成“完美透镜”。完美透镜的设想引起了广泛的研究兴趣,并开辟了一个新领域,该领域后来被广泛称为超材料。如今,二十年过去了,超材料的蓬勃发展彻底改变了物理学、材料科学、化学和工程学中的众多研究。为了阐明超材料的研究方向,《光:科学与应用》邀请了超材料之父、在世传奇人物约翰·彭德里爵士讲述超材料的未来。原始采访可在补充视频中观看。