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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Sub-terahertz wideband vector beam generator based on superwavelength lattice dielectric grating
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Sub-terahertz wideband vector beam generator based on superwavelength lattice dielectric grating

机译:基于超波长格电介质光栅的子太赫兹宽带矢量光束发生器

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摘要

Segmented orientation of a half wave plate will convert a linear polarization into a cylindrical vector polarization. In this work, the half wave plate is achieved by 3D printed low-index dielectric grating, whose segmented rotation forms a vector beam generator. The radially and azimuthally polarized beam is experimentally measured at 140 GHz when passing through the printed sample. Further study shows that the grating lattice affects the bandwidth of the vector beam generator. The frequently used subwavelength lattice design shows narrow bandwidth due to the undesired eigenmode dispersion and interaction. In contrast, the superwavelength lattice design offers wideband and efficient vector beam generation thanks to the weak diffraction of the low-index material and the proper eigenmode dispersion. The mechanism can be applied similarly to other type of polarization control to enrich sub-terahertz elements.
机译:半波片的分段取向将将线性偏振转换为圆柱形矢量偏振。 在这项工作中,通过3D印刷的低折射率电介质光栅实现半波片,其分段旋转形成矢量光束发生器。 当通过印刷样品时,在140GHz处通过在140GHz上进行实验测量径向和方位角偏振梁。 进一步的研究表明,光栅晶格影响矢量光束发生器的带宽。 由于不希望的特征模色散和相互作用,常用的子波长晶格设计显示窄带宽。 相反,由于低折射率材料和适当的特征模色散的弱衍射,超波长格子设计提供了宽带和有效的矢量波束发电。 该机制可以类似地应用于其他类型的偏振控制来富力亚赫尔兹元件。

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