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使用非交错超表面的全空间自旋解耦通用波前操纵

Full-space spin-decoupled versatile wavefront manipulations using non-interleaved metasurface.

作者信息

Wang Chaohui, Xu He-Xiu, Hu Guangwei, Liu Yi, Liu Tong, Wang Kun, Zhang Fan, Xu Shuo, Xu Jian, Pang Zhichao

机构信息

Air and Missile Defense College, Air Force Engineering University, Xi'an 710051, China.

School of Electrical & Electronic Engineering, Nanyang Technological University, 50 Nanyang Avenue, Singapore 639798, Singapore.

出版信息

Nanophotonics. 2023 Jun 19;12(15):3149-3158. doi: 10.1515/nanoph-2023-0171. eCollection 2023 Jul.

Abstract

Achieving multifunctional wavefront manipulations of waves with a flat and thin plate is pivotal for high-capacity communications, which however is also challenging. A multi-layer metasurface with suppressed mode crosstalk provides an efficient recipe primarily for circular polarization, but all multiple functionalities still are confined to locked spin states and modes. Here, a multifunctional metasurface with spin-decoupled full-space wavefront control is reported by multiplexing both linear momentum and frequency degree of freedom. We employed vertically cascaded quadrangular patches and crossbars to integrate both geometric and dynamic phases and realized four channels between two spin states and two frequencies in distinct scattering modes (transmission and reflection). For verification, a proof-of-concept metadevice with four-port wavefront manipulations is experimentally demonstrated, exhibiting distinct functionalities including spin- and frequency-dependent focusing, quad-beam radiation, anomalous reflections, and Bessel beam generation. Our finding of full-space spin-decoupled metasurfaces would be important for high-capacity communications, multifunctional radar detections, and other applications.

摘要

利用扁平薄板实现波的多功能波前操纵对于高容量通信至关重要,但这也具有挑战性。一种抑制模式串扰的多层超表面主要为圆极化提供了一种有效方法,但所有多种功能仍局限于锁定的自旋状态和模式。在此,通过复用线动量和频率自由度,报道了一种具有自旋解耦全空间波前控制的多功能超表面。我们采用垂直级联的四边形贴片和横杆来整合几何相位和动态相位,并在两个自旋状态和两个频率之间的不同散射模式(透射和反射)中实现了四个通道。为进行验证,通过实验展示了一种具有四端口波前操纵的概念验证超器件,其展现出包括自旋和频率相关聚焦、四波束辐射、反常反射以及贝塞尔光束生成等不同功能。我们对全空间自旋解耦超表面的发现对于高容量通信、多功能雷达探测及其他应用具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b993/11501214/c1ff680666e5/j_nanoph-2023-0171_fig_004.jpg

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