漩涡光束的产生

Chang Liu, D. Wei, Mingce Chen, Xinyu Zhang
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引用次数: 0

摘要

一般来说,旋涡光波是沿轴螺旋传播的光束。在光涡旋中,光被扭曲。由于它们的扭转特性,在轴的位置上的光相互抵消。如果将漩涡投射到平面上,它的图像看起来像一个光晕,中间有一个没有光的黑暗区域。涡旋光束是一种新型的激光束,在光学显微操作、激光光学、生物光学、光信息传输、粒子波导、原子光学、分子光学等领域有着广泛的应用。与普通高斯光束相比,涡旋光束具有光束中心强度为零、纵向光强呈圆柱形分布、暗斑尺寸在微米量级、无加热效应、轨道角动量等优点。这使得涡旋光束在光学捕获、光学旋转、非线性光学、光学信息处理等领域具有很高的应用价值。涡旋光束的科学价值日益突出。本文设计了一种类似螺旋相板(SPP)的新型涡流光束产生结构,并利用仿真软件对其强度分布进行了分析,该结构可以看作是透镜和螺旋相板的组合。通过仿真分析验证了涡束产生的可行性,并对设计结构和一般螺旋相板结构产生的涡束进行了仿真分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Generation of vortex lightbeams
Generally, the vortex lightwaves are beams that propagates helically along an axis. In an optical vortex, light is twisted. Due to their twisting property, the light at the position of the axis cancels each other. If the vortex is projected onto a plane, its image looks like a halo, with a dark area without light in the middle. Vortex beams are a new type of laser beams, which have been widely used in optical micromanipulation, laser optics, bio-optics, optical information transmission, particle waveguide, atomic optics, and molecular optics. Compared to ordinary Gaussian beams, vortex beams have many advantages, such as: zero intensity at the center of the beam, cylindrical distribution of longitudinal light intensity, dark spot size on the order of micrometers, no heating effect, orbital angle momentum and so on. This makes the vortex beams have very high application value in many fields, such as optical capture, optical rotation, nonlinear optics, and optical information processing. The scientific value of the vortex beams is increasingly prominent. In this paper, a novel structure similar to a spiral phase plate(SPP) to generate a vortex beam is designed, and its intensity distribution is analyzed using simulation software, which can be seen as a combination of a lens and a spiral phase plate. We verify the feasibility of generating vortex beams by simulation analysis, and analyze vortex beams generated by the designed structure and the general spiral phase plate structure by simulation.
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