Fu Yangyang, Tian Yuan, Li Xiao, Yang Shili, Liu Youwen, Xu Yadong, Lu Minghui
Department of Applied Physics, Nanjing University of Aeronautics and Astronautics, Nanjing 211106, China.
Key Laboratory of Aerospace Information Materials and Physics (NUAA), MIIT, Nanjing 211106, China.
Phys Rev Lett. 2022 Mar 11;128(10):104501. doi: 10.1103/PhysRevLett.128.104501.
In this Letter, we introduce a new paradigm for achieving robust asymmetric generation of acoustic vortex field through dual-layer metasurfaces by controlling their intrinsic topologic charges and the parity of geometry design. The underlying physics is contributed to the one-way process of orbital angular momentum (OAM) transition ensured by the broken spatial symmetry and the external topologic charge from the vortex diffraction. We further experimentally demonstrate this novel phenomenon. Our findings could provide new routes to manipulate the asymmetric response of vortex fields, including one-way excitation and propagation, and promise potential applications in passive OAM-based diodes.
在本信函中,我们介绍了一种新的范式,即通过双层超表面控制其固有拓扑电荷和几何设计的奇偶性,来实现稳健的声涡旋场非对称生成。其潜在物理原理归因于由空间对称性破缺和涡旋衍射产生的外部拓扑电荷所确保的轨道角动量(OAM)转换的单向过程。我们进一步通过实验证明了这一新颖现象。我们的发现可为操纵涡旋场的非对称响应提供新途径,包括单向激发和传播,并有望在基于被动OAM的二极管中得到潜在应用。