平面的
波长
各向异性
物理
方格
均质化(气候)
波传播
布洛赫波
格子(音乐)
光学
凝聚态物理
声学
生物
生物多样性
计算机图形学(图像)
伊辛模型
计算机科学
生态学
作者
A. Srikantha Phani,J. Woodhouse,N.A. Fleck
摘要
Plane wave propagation in infinite two-dimensional periodic lattices is investigated using Floquet-Bloch principles. Frequency bandgaps and spatial filtering phenomena are examined in four representative planar lattice topologies: hexagonal honeycomb, Kagomé lattice, triangular honeycomb, and the square honeycomb. These topologies exhibit dramatic differences in their long-wavelength deformation properties. Long-wavelength asymptotes to the dispersion curves based on homogenization theory are in good agreement with the numerical results for each of the four lattices. The slenderness ratio of the constituent beams of the lattice (or relative density) has a significant influence on the band structure. The techniques developed in this work can be used to design lattices with a desired band structure. The observed spatial filtering effects due to anisotropy at high frequencies (short wavelengths) of wave propagation are consistent with the lattice symmetries.
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