论文标题
射波和准晶弹性超材料板中的衍射
Wave beaming and diffraction in quasicrystalline elastic metamaterial plates
论文作者
论文摘要
在本文中,我们提出了定向波行为的数值和实验性证据,即沿准晶体弹性弹性超材料板的高阶旋转对称性,即光束和衍射。这些结构是通过在弹性板上在特定的旋转对称排列(例如8倍和10倍旋转对称性)上种植柱子来获得的,这是通过相互空间中的设计程序执行的。我们通过瞬态波场的傅立叶变换来估计板在板中传播的波的色散特性。该过程在数值和实验上都识别出各向异性带的存在,这些各向异性条带的特征是在相互空间中孤立区域的高能量密度遵循其高阶旋转对称性。在确定的频带(例如波梁和衍射)上显示了特定的方向行为。这项工作将波浪方向性现象扩展到周期构型的对称性(例如4倍和6倍)之外,并为涉及准晶体的异常高阶波特征(例如卓越指导,焦点,焦点,传感和成像)的应用打开了新的可能性。
In this paper, we present numerical and experimental evidence of directional wave behavior, i.e. beaming and diffraction, along high-order rotational symmetries of quasicrystalline elastic metamaterial plates. These structures are obtained by growing pillars on an elastic plate following a particular rotational symmetry arrangement, such as 8-fold and 10-fold rotational symmetries, as enforced by a design procedure in reciprocal space. We estimate the dispersion properties of the waves propagating in the plates through Fourier transformation of transient wave-fields. The procedure identifies, both numerically and experimentally, the existence of anisotropic bands characterized by high energy density at isolated regions in reciprocal space that follow their higher order rotational symmetry. Specific directional behavior is showcased at the identified frequency bands, such as wave beaming and diffraction. This work expands the wave directionality phenomena beyond the symmetries of periodic configurations (e.g., 4-fold and 6-fold), and opens new possibilities for applications involving the unusual high-order wave features of the quasicrystals such as superior guiding, focusing, sensing and imaging.