论文标题

审查超材料研究中的基础概念和新兴方向:设计,现象和应用

Review of foundational concepts and emerging directions in metamaterial research: Design, phenomena, and applications

论文作者

Holliman Jr, Jade E., Schaef, H. Todd, McGrail, B. Peter, Miller, Quin R. S.

论文摘要

在过去的二十年中,已发现称为超材料的人工结构具有非凡的材料特性,可以使电磁波,弹性波,分子和颗粒的前所未有的操纵。这些材料等现象,例如负折射,带镜,接近完美的波吸收,波动量比,负电导率等现象,这些材料都是可能的。超材料最初是在电动力学中进行的,并在电动力学中制造,但是对其应用的研究已扩展为声学,热力学,地震学,经典力学和大规模运输。在这项研究更新中,我们总结了按场划分的超材料的历史,进度状态和新兴方向,将统一原则集中在每个学科的基础上。我们讨论了超材料背后的不同设计和机制,以及每个字段的管理方程和有效材料参数。同样,讨论了超材料的当前和潜在应用。最后,我们对新兴领域的未来进步提供了前景。

In the past two decades, artificial structures known as metamaterials have been found to exhibit extraordinary material properties that enable the unprecedented manipulation of electromagnetic waves, elastic waves, molecules, and particles. Phenomena such as negative refraction, bandgaps, near perfect wave absorption, wave focusing, negative Poissons ratio, negative thermal conductivity, etc., all are possible with these materials. Metamaterials were originally theorized and fabricated in electrodynamics, but research into their applications has expanded into acoustics, thermodynamics, seismology, classical mechanics, and mass transport. In this Research Update we summarize the history, current state of progress, and emerging directions of metamaterials by field, focusing the unifying principles at the foundation of each discipline. We discuss the different designs and mechanisms behind metamaterials as well as the governing equations and effective material parameters for each field. Also, current and potential applications for metamaterials are discussed. Finally, we provide an outlook on future progress in the emerging field of metamaterials.

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