材料科学
纳米线
飞秒
衍射
光学
制作
纳米光刻
激光器
光圈(计算机存储器)
光电子学
梁(结构)
数值孔径
物理
病理
替代医学
波长
医学
声学
作者
Liang Zhao,Lingyu Huang,Jiaxu Huang,Kang Xu,Min Wang,Shaolin Xu,Xinwei Wang
标识
DOI:10.1002/admt.202200125
摘要
Abstract Metallic nanowires have exhibited paramount importance in achieving functional electrical, electrochemical, and optical performances due to their unique physicochemical properties. Efficient fabrication of the nanowires with controllable geometry and line width is highly required in related applications. Here a new far‐field laser parallel direct writing approach for fabricating nanowire array far beyond the diffraction limit by a modulated vector beam with dual‐peak intensity distribution is reported. Such a modulated beam can perform selective laser ablation to fabricate nanowires, whose line width can be largely reduced by tuning the dual‐peak orientation relative to the laser scanning direction. As a demonstration, a 157 nm‐wide (less than λ/3) gold nanowire, reaching ≈1/20 of the diffraction limit, has been fabricated in far field by using a low numerical aperture microscope objective (NA = 0.1). The nanowire fabrication efficiency is also largely improved by applying multifocal modulated vector beams for parallel processing.
科研通智能强力驱动
Strongly Powered by AbleSci AI