3D Periodic Patterns Using Polarization Controlled $3+1$ Beams Interference

Yukai Wang, Litong Dong, Lu Wang, Mengnan Liu, Zhibo Zhang, Zuobin Wang, Dayou Li, Renxi Qiu
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Abstract

In this work, we studied the influence of polarizations in the 3D-light field formed by a multi-beam amplitude interference strategy. The 3D periodic structures are created by $3+1$ beams interference. A comparative study using MATLAB simulation has been performed to visualize the effect of diverse polarization modes on the formation of 3D intensity patterns. Based on the multi-beam amplitude interference strategy, varied 3D periodic structures can be designed by tuning the polarization mode of the coherent beams, which provide design ideas for the manufacture of large-area 3D crystal structures.
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使用偏振控制的$3+1$光束干涉的3D周期图案
在这项工作中,我们研究了偏振对多波幅干涉策略形成的3d光场的影响。三维周期结构由$3+1$光束干涉产生。利用MATLAB仿真进行了对比研究,可视化了不同偏振模式对三维强度模式形成的影响。基于多波束振幅干涉策略,通过调整相干波束的偏振模式可以设计出不同的三维周期结构,为制造大面积三维晶体结构提供了设计思路。
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