Department of Electronics and Nanoengineering, Aalto University, P.O. Box 15500, FI-00076 Aalto, Finland.
Phys Rev Lett. 2018 Dec 21;121(25):256802. doi: 10.1103/PhysRevLett.121.256802.
On the quest towards full control over wave propagation, the development of compact devices that allow asymmetric response is a challenge. In this Letter, we introduce a new paradigm for the engineering of asymmetry in planar structures, revealing and exploiting unilateral excitation of evanescent waves. We test the idea with the design and experimental characterization of a metasurface for angular-asymmetric absorption. The results show that the contrast ratio of absorption (the asymmetry level) can be arbitrarily engineered from zero to infinity for waves coming from two oppositely tilted angles. We demonstrate that the revealed asymmetry effects cannot be realized using conventional diffraction gratings, reflectarrays, and phase-gradient metasurfaces. This Letter opens up promising possibilities for wave manipulation via evanescent waves engineering with applications in one-side detection and sensing, angle-encoded steganography, flat nonlinear devices, and shaping the scattering patterns of various objects.
在追求对波传播完全控制的过程中,开发允许非对称响应的紧凑型设备是一个挑战。在这篇快报中,我们引入了一种新的方法来设计平面结构中的非对称性,揭示并利用了消逝波的单边激发。我们通过设计和实验表征用于角非对称吸收的超表面来测试这个想法。结果表明,对于来自两个相反倾斜角度的波,吸收的对比度(不对称水平)可以任意从 0 到无穷大进行设计。我们证明,所揭示的非对称效应不能使用传统的衍射光栅、反射阵列和相位梯度超表面来实现。本快报为通过消逝波工程进行波操纵开辟了有前景的可能性,其应用包括单边检测和传感、角度编码隐写术、平面非线性器件以及各种物体的散射模式的整形。