论文标题
一个20 GBPS梁传动的红外线链接由可被动的磁场截图启用
A 20-Gbps Beam-steered Infrared Wireless Link Enabled by a Passively Field-programmable Metasurface
论文作者
论文摘要
梁转向是节能和高速红外光通信的主要挑战之一。迄今为止,已经证明了基于空间光调制器(SLM)或微电动机械系统(MEMS)镜子以及基于衍射光栅的被动式机械系统(MEMS)镜像的主动光束探测方案。在这里,据我们所知,红外光束在一个侧面由35°引导,由可被动的野外可编程元表赋予。通过将波长和极化的集中控制结合在一起,远程无源跨表面可以将红外光束转向远程访问点。所提出的系统可保持可扩展性支持多个光束,灵活地转向横梁,高效率,遥远的侧面简单且廉价的设备以及集中控制(低维护成本),同时避免了缺点,例如光栅损失,较小的覆盖面积和笨重的尺寸。基于提出的梁驱动技术,我们还展示了概念验证实验系统,其数据速率为20 Gbps。
Beam steering is one of the main challenges in energy-efficient and high-speed infrared light communication. To date, active beam-steering schemes based on a spatial light modulator (SLM) or micro-electrical mechanical system (MEMS) mirror, as well as the passive ones based on diffractive gratings, have been demonstrated for infrared light communication. Here, for the first time to our knowledge, an infrared beam is steered by 35° on one side empowered by a passively field-programmable metasurface. By combining the centralized control of wavelength and polarization, a remote passive metasurface can steer the infrared beam in a remote access point. The proposed system keeps scalability to support multiple beams, flexibility to steer the beam, high optical efficiency, simple and cheap devices on remote sides, and centralized control (low maintenance cost), while it avoids disadvantages such as grating loss, a small coverage area, and a bulky size. Based on the proposed beam-steering technology, we also demonstrated a proof-of-concept experiment system with a data rate of 20 Gbps.