光学
数值孔径
物理
横截面
极化(电化学)
叠加原理
旋涡
圆极化
基点
径向极化
显微镜
焦距
偏振光显微镜
近场扫描光学显微镜
梁(结构)
光轴
涡流
光学显微镜
激光束质量
激光器
扫描电子显微镜
激光束
镜头(地质)
量子力学
物理化学
工程类
波长
微带线
化学
结构工程
热力学
作者
Xiangping Li,Priyamvada Venugopalan,Haoran Ren,Minghui Hong,Miṅ Gu
出处
期刊:Optics Letters
[Optica Publishing Group]
日期:2014-10-10
卷期号:39 (20): 5961-5961
被引量:57
摘要
We report on the experimental demonstration of super-resolved pure-transverse focal fields through focusing an azimuthally polarized first-order vortex (FOV) beam. The optimized confinement of focal fields by creating constructive interference through the superposition of the FOV on an azimuthally polarized beam is observed by both a scanning near-field microscope and a two-photon fluorescence microscope. An enhanced peak intensity of the focal spot by a factor of 1.8 has been observed compared with that of the unmodulated azimuthally polarized beam. The super-resolved and pure-transverse focal fields with a 31% reduced focal area determined by the full-width at half-maximum compared to that of tightly focused circular polarization is experimentally corroborated. This superiority over the circular polarization stands for any numerical aperture greater than 0.4. This technique holds the potential for applications requiring subwavelength resolution and pure-transverse fields such as high-density optical data storage and high-resolution microscopy.
科研通智能强力驱动
Strongly Powered by AbleSci AI