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PHONONIC METAMATERIALS FOR VIBRATION ISOLATION AND FOCUSING OF ELASTIC WAVES

机译:弹性波的振动隔离和聚焦的光子材料

摘要

A methodology for designing structured metamaterials that can reflect, absorb and focus the propagation of both scalar acoustic and vector elastic waves is described. Three exemplary representative inventions based on the disclosed invention are described, illustrating i) compact ultra-wide broadband isolation, ii) sub-wavelength gaps and negative index propagation utilizing a single material platform, and iii) a fundamentally new method of producing multiple high frequency spectral gaps. Such metamaterial designs possess a wide range of potential applications, ranging from but not limited to, isolating an entity from external mechanical or acoustical vibrations, compact focusing lenses as well as cascaded high frequency filters for wave shaping and nonlinear wave propagation control.
机译:描述了一种设计结构化超材料的方法,该材料可以反射,吸收和聚焦标量声波和矢量弹性波的传播。描述了基于所公开的发明的三个示例性代表性发明,其示出了i)紧凑的超宽宽带隔离,ii)利用单个材料平台的亚波长间隙和负折射率传播,以及iii)产生多个高频的根本上新的方法光谱间隙。这样的超材料设计具有广泛的潜在应用,范围包括但不限于将实体与外部机械或声学振动隔离,紧凑型聚焦透镜以及用于波整形和非线性波传播控制的级联高频滤波器。

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