Piłka Jacek, Kwaśny Michał, Filipkowski Adam, Buczyński Ryszard, Karpierz Mirosław A, Laudyn Urszula A
Faculty of Physics, Warsaw University of Technology, Koszykowa 75, 00-662 Warsaw, Poland.
Photonic Materials Group, Łukasiewicz Research Network-Institute of Microelectronics and Photonics, Al. Lotnikow 32/46, 02-668 Warsaw, Poland.
Materials (Basel). 2022 Nov 4;15(21):7794. doi: 10.3390/ma15217794.
We study an optical device designed for converting the polarized Gaussian beam into an optical vortex of tunable polarization. The proposed device comprised a set of three specially prepared nematic liquid crystal cells and a nano-spherical phase plate fabricated from two types of glass nanotubes. This device generates a high-quality optical vortex possessing one of the multiple polarization states from the uniformly polarized input Gaussian beam. Its small size, simplicity of operation, and electrical steering can be easily integrated into the laboratory and industrial systems, making it a promising alternative to passive vortex retarders and spatial light modulators.
我们研究了一种用于将偏振高斯光束转换为可调谐偏振光学涡旋的光学器件。所提出的器件由一组三个经过特殊制备的向列型液晶盒和一个由两种类型的玻璃纳米管制成的纳米球形相位板组成。该器件从均匀偏振的输入高斯光束中产生具有多种偏振态之一的高质量光学涡旋。其体积小、操作简单且可电控制,能够轻松集成到实验室和工业系统中,使其成为无源涡旋延迟器和空间光调制器的一种有前景的替代方案。