在光子学上集成的元表面用于排放成形和全息投影
Ping-Yen Hsieh1, Shun-Lin Fang1, Yu-Siang Lin1
1Department of Photonics, College of Electrical and Computer Engineering, National Yang Ming Chiao Tung University, Hsinchu 30010, Taiwan.
Nanophotonics (Berlin, Germany)
|December 5, 2024
概括
与超表面集成的光子学可实现多功能自由空间辐射成型,用于LiDAR和光通信等应用. 这种单体平台提供先进的光束控制和全息投影功能.
科学领域:
- 光子学和光电学和光电子学.
- 超表面是指表面上的元表面.
- 光子学 光子学
背景情况:
- 新兴的自由空间光子应用 (LiDAR,光通信,量子光子) 需要先进的辐射成型.
- 传统的网格合器缺乏在自由空间发射中精确的空间模式控制所需的多功能性.
- 需要一个CMOS兼容的单体平台来实现多功能自由空间排放成型.
研究的目的:
- 展示一个新的平台,将元表面单体集成到光子集成电路上.
- 为了实现对光子芯片的自由空间光辐射的多功能控制.
- 为了启用像光束聚焦,切换和全息投影这样的功能.
主要方法:
- 无形纳米柱元表面与波导体的整合.
- 从波导向到元表面的光线的合用于排放控制.
- 束聚焦,点切换和元全息图投影的实验性表征.
主要成果:
- 已证明的衍射受限光束聚焦具有0.82.8的高斯特雷尔比率.
- 通过控制激发方向,通过控制两个位置之间实现可切换的聚焦.
- 成功实现了一个超全息图,在光子芯片上方投射一个图像.
结论:
- 集成的超表面平台为光子学提供了多功能界面.
- 这项技术可以精确控制和塑造自由空间光辐射.
- 该平台增强现有的光子生态系统,用于先进的自由空间应用.
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