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Asymmetric surface wave excitation through metasurface-edge diffraction

机译:通过元表面边缘衍射的不对称表面波激励

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The selective excitation of localized surface wave modes remains a challenge in the design of both leaky-wave and bound-wave devices. In this Letter, we show how the truncation of a metasurface can play an important role in breaking the spatial inversion symmetry in the excitation of surface waves supported by the structure. This is done by combining a large anisotropy in the dispersion relation and the presence of an edge that also serves as a coupling mechanism between the plane wave excitation and the induced surface waves. By resorting to the exact solution to the scattering problem based on a discrete Wiener-Hopf technique, we show that by inverting the component of the impinging wavevector parallel to the truncation, two distinct surface waves are excited. (C) 2020 Optical Society of America
机译:局部表面波模式的选择性激发仍然是漏洞波和界波器件的设计中的挑战。 在这封信中,我们展示了质量表面的截断如何在破坏结构的表面波激励中打破空间反转对称性的重要作用。 这是通过在色散关系中组合的大各向异性以及边缘的存在来完成的,该边缘也用作平面波激励和诱导的表面波之间的耦合机构。 通过基于离散维纳跳乐技术求助于散射问题的精确解决方案,我们表明,通过反驳平行于截断的撞击波动器的分量,可以激发两个不同的表面波。 (c)2020美国光学学会

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