非局部和非赫密特声学元表面的非局部和非赫密特声学元表面
Xu Wang1, Ruizhi Dong1, Yong Li1
1Institute of Acoustics, School of Physics Science and Engineering, Tongji University, Shanghai 200092, People's Republic of China.
Reports on progress in physics. Physical Society (Great Britain)
|September 21, 2023
概括
本综述探讨了利用非局部性和损失的先进声学超表面,超越了传统设计. 这些新型材料提供了控制声音的新方法,灵感来自2D材料和非赫密斯物理.
科学领域:
- 声学元材料是一种声学元材料.
- 功能材料研究研究 功能材料
- 波浪操纵 波浪操纵是一种
背景情况:
- 传统的声学超表面面临由于脱单元细胞假设和固有的损失的限制.
- 衍射效应引入非局部性,影响地表效率和行为.
- 传统的设计侧重于相调节,并假定无损系统,忽视波长结构中的自然损失.
研究的目的:
- 审查非局部和非赫米蒂安声学元表面的进展情况.
- 提供最近设计的概述,并讨论非局部性和损失的作用.
- 探索非局部性和非隐居性之间的协同作用,以提高声控.
主要方法:
- 审查了关于声学超表面设计的最新文献.
- 分析非局部性的物理原理和金属表面的损失.
- 讨论非赫密斯物理概念对声学系统的应用.
主要成果:
- 新一代声学超表面利用非局部性和非隐居性来增强功能.
- 这些超表面为声音控制提供了新的路线,类似于2D材料.
- 非局部性和非隐居性之间的协同作用为调查特殊点提供了可能性.
结论:
- 非局部和非赫密特声学元表面代表了声波操纵的范式转变.
- 这些先进的材料为基础物理研究提供了一个平台,特别是在非赫尔密斯物理中.
- 该领域对声学功能材料的未来进步具有重大潜力.
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