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Longitudinally varying vector vortex beams based on terahertz 3D printed metasurfaces
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作者 XINFEI WU MANNA GU +7 位作者 HUIZHEN FENG SHUAIKANG HE DONG LI YING TIAN BO FANG LE WANG ZHI HONG XUFENG JING 《Photonics Research》 2025年第10期2744-2756,共13页
Vector vortex beams(VVBs)have garnered significant attention in fields such as photonics,quantum information processing,and optical manipulation due to their unique optical properties.However,traditional metasurface f... Vector vortex beams(VVBs)have garnered significant attention in fields such as photonics,quantum information processing,and optical manipulation due to their unique optical properties.However,traditional metasurface fabrication methods are often complex and costly,limiting their practical application.This study successfully fabricated an all-dielectric aluminum oxide metasurface capable of achieving longitudinal variation using 3D printing technology.Experimental results demonstrate that this metasurface generates longitudinally varying VVBs at 0.1 THz,with detailed characterization of its longitudinal intensity distribution and vector polarization states.The high consistency between experimental and simulation results validates the effectiveness of 3D printing in metasurface fabrication.The proposed metasurface offers promising applications in optical polarization control and communication,providing,to our knowledge,new insights and technical support for related research. 展开更多
关键词 D printed metasurfaces TERAHERTZ vector vortex beams vvbs achieving longitudinal variation longitudinal variation vector vortex beams photonicsquantum information processingand d printing
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