Department of Mechanical and Aerospace Engineering, Missouri University of Science and Technology , Rolla, Missouri 65409, United States.
Nano Lett. 2016 May 11;16(5):3101-8. doi: 10.1021/acs.nanolett.6b00360. Epub 2016 Apr 21.
Nanoscale compact optical vortex generators promise substantially significant prospects in modern optics and photonics, leading to many advances in sensing, imaging, quantum communication, and optical manipulation. However, conventional vortex generators often suffer from bulky size, low vortex mode purity in the converted beam, or limited operation bandwidth. Here, we design and demonstrate gradient-rotation split-ring antenna metasurfaces as unique spin-to-orbital angular momentum beam converters to simultaneously generate and separate pure optical vortices in a broad wavelength range. Our proposed design has the potential for realizing miniaturized on-chip OAM-multiplexers, as well as enabling new types of metasurface devices for the manipulation of complex structured light beams.
纳米级紧凑型光学涡旋发生器有望在现代光学和光子学领域取得重大进展,推动传感、成像、量子通信和光操控等领域的发展。然而,传统的涡旋发生器通常存在尺寸庞大、转换光束中涡旋模式纯度低或带宽有限等问题。在这里,我们设计并演示了梯度旋转环形天线超表面作为独特的自旋-轨道角动量光束转换器,可在宽波长范围内同时产生和分离纯光学涡旋。我们的设计有望实现小型化的片上轨道角动量复用器,并为操控复杂结构光束的新型超表面器件提供可能。