论文标题
与偏振依赖性跨额的近场光学MIMO通信
Near-Field Optical MIMO Communication with Polarization-dependent Metasurfaces
论文作者
论文摘要
在纳米级控制波的能力引起了对光学成像和加密系统中超薄跨表面镜头(金属)的极大关注。我们提出了一种通过将超薄的二键蛋白氧化物(ITO)整合到单位细胞中,以作为一种可调的可调材料,提出了一种积极调整元信息的方法。提出的设计具有两个正交的翅膀,可以独立操纵与相应的正交极化的波浪。通过调节所施加的偏置电压来改变ITO积累层中的电荷载体浓度。该偏置电压在Terahertz频率上产生相变的相变,用于反射的横向电气和横向磁性波。可以通过改变偏置电压而不会进行任何物理运动的情况下移动两个金属的焦点。此外,本文探讨了虚拟金属在新颖的多输入和多输出(MIMO)通信体系结构中的应用。我们演示了一个基于单点二进制数据通信和十六进制轨道角动量(OAM)数据通信的通信系统。然后,正交通道可用于高容量的MIMO通信。提出的设计为高速通信以及极化控制的分子成像系统铺平了道路。
The ability to control waves at the nanoscale has attracted considerable attention to ultrathin metasurface lenses (metalenses) in optical imaging and encryption systems. We propose an approach to active tuning metasurfaces by integrating an ultrathin layer of indium-tin-oxide (ITO) into a unit cell as an electro-optically tunable material. A proposed design features two orthogonal wings that can independently manipulate waves with corresponding orthogonal polarizations. The charge carrier concentration in the ITO accumulation layer is altered by modulating the applied bias voltage. This bias voltage generates phase variations at terahertz frequencies for the reflected transverse electric and transverse magnetic polarized waves. It is possible to move both focal points of a metalens without any physical movement by varying the bias voltage. In addition, this paper explores the application of virtually moving metalens for a novel multiple-input and multiple-output (MIMO) communication architecture. We demonstrate a communication system based on single-point binary data communication and hexadecimal orbital angular momentum (OAM) data communication. Then, orthogonal channels can be used for MIMO communication with high capacity. The proposed design paves the way for high-speed communications as well as polarization-controlled molecular imaging systems.