Lee Dong-Ho, Kim Hong Seung, Han Ilkyu, Bae Ji Yong, Yeo Woo-Jong, Jeong Seok Kyung, Jeon Minwoo, Choi Hwan-Jin, Kim Dong Uk, Lee Kye-Sung, Chang Ki Soo, Lee Wonkyun, Kim Geon Hee, Kim I Jong
Opt Lett. 2021 Sep 1;46(17):4216-4219. doi: 10.1364/OL.432413.
Wavelength-tunable optical vortices with a topological charge equal to =1 of orbital angular momentum (OAM) were experimentally realized using a single off-axis spiral phase mirror (OSPM) with lasers of various visible-light wavelengths. Using an OSPM designed for 561 nm and an incidence angle of 45°, circular doughnut-shaped =1 optical vortices were obtained at 561, 473, and 660 nm by rotating the OSPM to modify the laser incidence angle. Wavelength-tunable =1 optical vortices were obtained at the respective incidence angles of 45°, 53.4°, and 33.7°, because the effective geometrical thickness of the OSPM, which determines the order of OAM, was identical at each wavelength. This flexible OSPM which operates over a wide wavelength range will provide continuously wavelength-tunable optical vortices for applications in the fields of advanced optics and photonics in which optical vortices with wide wavelength tunability are in demand.
利用单个离轴螺旋相位镜(OSPM)和各种可见光波长的激光,通过实验实现了拓扑电荷等于轨道角动量(OAM)=1的波长可调谐光学涡旋。使用设计用于561nm且入射角为45°的OSPM,通过旋转OSPM以改变激光入射角,在561、473和660nm处获得了圆形甜甜圈形状的=1光学涡旋。在45°、53.4°和33.7°的各自入射角处获得了波长可调谐的=1光学涡旋,这是因为决定OAM阶数的OSPM的有效几何厚度在每个波长处是相同的。这种在宽波长范围内工作的灵活OSPM将为先进光学和光子学领域的应用提供连续波长可调谐的光学涡旋,在这些领域中需要具有宽波长可调性的光学涡旋。