Tang Yugan, Xie Boyang, Liu Hui, Zhang Ya, Cheng Hua, Chen Shuqi
The Key Laboratory of Weak Light Nonlinear Photonics, Ministry of Education, School of Physics and TEDA Institute of Applied Physics, Nankai University, Tianjin 300071, China.
School of Materials Science and Engineering, Smart Sensing Interdisciplinary Science Center, Nankai University, Tianjin 300350, China.
Phys Rev Lett. 2024 Apr 26;132(17):177001. doi: 10.1103/PhysRevLett.132.177001.
Asymmetric transmission in a passive vortex system is highly desirable, as it enables the development of compact vortex-based devices. However, breaking the mirror symmetry of transmission via a single metasurface poses challenges due to the inherent symmetric transmission properties in reciprocity. Here, we theoretically propose and experimentally demonstrate a novel transmission-reflection phase coupling mechanism to achieve the broken mirror symmetry of sound vortex transmission. This mechanism establishes a special coupling link between transmission and reflection waves, superimposing asymmetric reflection phases on the transmission phases. By utilizing a single passive phase gradient metasurface with asymmetric reflection phase twists, distinct transmission phase twists for mirror-symmetric incident vortices can be achieved within a cylindrical waveguide. This is typically difficult to imple-ment in a reciprocal system. Numerical and experimental results both demonstrate the broken mirror symmetry of vortex transmission and reflection. Our findings offer a new strategy for controlling vortex wave propagation, which may inspire new directional applications and extend to the field of photonics.
在无源涡旋系统中实现非对称传输是非常可取的,因为它能够推动基于涡旋的紧凑型器件的发展。然而,由于互易性中固有的对称传输特性,通过单个超表面打破传输的镜面对称性具有挑战性。在此,我们从理论上提出并通过实验证明了一种新颖的传输 - 反射相位耦合机制,以实现声涡旋传输的镜面对称性破缺。该机制在传输波和反射波之间建立了一种特殊的耦合联系,将非对称反射相位叠加在传输相位上。通过利用具有非对称反射相位扭曲的单个无源相位梯度超表面,在圆柱形波导内可以实现镜面对称入射涡旋的不同传输相位扭曲。这在互易系统中通常很难实现。数值和实验结果均证明了涡旋传输和反射的镜面对称性破缺。我们的研究结果为控制涡旋波传播提供了一种新策略,这可能会激发新的定向应用,并扩展到光子学领域。