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Electromagnetic composites: From effective medium theories to metamaterials

机译:电磁复合材料:从有效介质理论到超材料

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摘要

Electromagnetic (EM) composites have stimulated tremendous fundamental and practical interests owing to their flexible electromagnetic properties and extensive potential engineering applications. Hence, it is necessary to systematically understand the physical mechanisms and design principles controlling EM composites. In this Tutorial, we first provide an overview of the basic theory of electromagnetism about electromagnetic constitutive parameters that can represent the electromagnetic properties of materials. We show how this corpus allows a consistent construction of effective medium theories and allows for numerical simulation of EM composites to deal with structure–property relationships. We then discuss the influence of spatial dispersion of shaped inclusions in the material medium on the EM properties of composites, which has not been systematically illustrated in the context of this interdisciplinary topic. Next, artificial composites or metamaterials with peculiar properties not readily available in nature are highlighted with particular emphasis on the control of the EM interaction with composites. We conclude by discussing appropriate methods of electromagnetic measurement and practical aspects for implementing composites for specific applications are described. Overall, this Tutorial will serve the purpose of introducing the basics and applications of electromagnetic composites to newcomers in this field. It is also anticipated that researchers from different backgrounds including materials science, optics, and electrical engineering can communicate to each other with the same language when dealing with this interdisciplinary subject and further push forward this advancement from fundamental science to technological applications.
机译:电磁(EM)复合材料由于其灵活的电磁特性和广泛的潜在工程应用,激发了巨大的基础和实际兴趣。因此,有必要系统地了解控制电磁复合材料的物理机理和设计原理。在本教程中,我们首先概述了电磁学的基本理论,即可以表示材料电磁特性的电磁本构参数。我们展示了该语料库如何允许有效介质理论的一致构建,并允许对电磁复合材料进行数值模拟以处理结构-性能关系。然后,我们讨论了材料介质中异形夹杂物的空间分散对复合材料电磁性能的影响,这在这个跨学科主题的背景下尚未得到系统说明。接下来,重点介绍了具有自然界中不易获得的特殊性能的人造复合材料或超材料,特别强调了电磁与复合材料相互作用的控制。最后,我们讨论了适当的电磁测量方法,并描述了在特定应用中实现复合材料的实际方面。总体而言,本教程将向该领域的新手介绍电磁复合材料的基础知识和应用。此外,来自材料科学、光学、电气工程等不同背景的研究人员在处理这一跨学科课题时,可以用相同的语言相互交流,进一步推动从基础科学到技术应用的进步。

著录项

  • 来源
    《Journal of Applied Physics》 |2022年第10期|101101-1-101101-27|共27页
  • 作者单位

    Laboratoire d’Electronique et Systèmes de Télécommunications, Université de Bretagne Occidentale;

    Institute for Composites Science Innovation (InCSI), School of Materials Science and Engineering, Zhejiang University;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类 应用物理学;
  • 关键词

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