Porfirev Alexey P, Khonina Svetlana N
Opt Express. 2017 Aug 7;25(16):18722-18735. doi: 10.1364/OE.25.018722.
In recent years, singular light beams with orbital angular momentum are one of the most striking examples of structured light that have been widely applied in modern science. The transition from the generation of a single vortex beam to the generation of multiple such beams progressed the development of singular optics. This paper presents a new efficient method of vortex laser beam splitting using a two-level pure-phase diffractive optical element. The proposed compact element, which can be easily implemented with a low-cost binary spatial light modulator or fabricated by electron beam lithography or photolithography, is a useful tool for the reconfigurable generation of multiple closed-packed vortex beams. Furthermore, the proposed splitter can efficiently operate in the wavelength range of approximately 8% of the central wavelength, thus providing an efficient method to generate optical vortex arrays with various potential applications in modern optics and photonics.
近年来,具有轨道角动量的奇异光束是结构化光中最引人注目的例子之一,已在现代科学中得到广泛应用。从单涡旋光束的产生到多涡旋光束的产生的转变推动了奇异光学的发展。本文提出了一种使用两级纯相位衍射光学元件的新型高效涡旋激光束分裂方法。所提出的紧凑型元件可以很容易地用低成本的二元空间光调制器实现,或者通过电子束光刻或光刻制造,是用于可重构产生多个紧密堆积涡旋光束的有用工具。此外,所提出的分束器可以在中心波长约8%的波长范围内高效运行,从而提供了一种有效的方法来产生在现代光学和光子学中有各种潜在应用的光学涡旋阵列。