论文标题

模式调制和空间多路复用的动态控制使用混合跨面

Dynamic control of mode modulation and spatial multiplexing using hybrid metasurfaces

论文作者

Lin, Zemeng, Huang, Lingling, Zhao, Ruizhe, Wei, Qunshuo, Zentgraf, Thomas, Wang, Yongtian, Li, Xiaowei

论文摘要

设计可动态控制散射的电磁波并在近红外(NIR)和光学方案中起作用的可重新配置的元信息仍然是一项具有挑战性的任务,这受到静态材料特性和固定结构的阻碍。相变材料(PCM)可以在无定形和晶体状态之间高频的高频率上提供高对比度的光学折射率,因此可以作为可行的可行材料,可作为可行的可重构跨国空间。在这里,我们提出了一个混合元面,可以任意调节具有均匀振幅的入射光振幅,并通过使用具有不同比率的金和PCM的复合同种环(CCR),以均匀的幅度和全$2π$相位覆盖。我们设计的跨表面具有双函数,能够通过在金属和氧化钒的半导体状态之间进行热切换(VO2)的热切换来拆分梁或产生涡流梁。它可以轻松地通过超小的足迹整合到低损耗光子电路中。我们的MetadeVice是主动控制梁的新型范式,这可能为信号处理,存储器存储,全息图和反爆炸带来新的机会。

Designing reconfigurable metasurfaces that can dynamically control scattered electromagnetic waves and work in the near-infrared (NIR) and optical regimes remains a challenging task, which is hindered by the static material property and fixed structures. Phase change materials (PCMs) can provide high contrast optical refractive indexes at high frequencies between amorphous and crystal states, therefore are promising as feasible materials for reconfigurable metasurfaces. Here, we propose a hybrid metasurface that can arbitrarily modulate the complex amplitude of incident light with uniform amplitude and full $2π$ phase coverage by utilizing composite concentric rings (CCRs) with different ratios of gold and PCMs. Our designed metasurface possesses a bi-functionality that is capable of splitting beams or generating vortex beams by thermal switching between metal and semiconductor states of vanadium oxide (VO2), respectively. It can be easily integrated into low loss photonic circuits with an ultra-small footprint. Our metadevice serves as a novel paradigm for active control of beams, which may open new opportunities for signal processing, memory storage, holography, and anti-counterfeiting.

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