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微球透镜亚波长显微成像远场特性实验研究
引用本文:郭明磊,官邦贵,秦炎福. 微球透镜亚波长显微成像远场特性实验研究[J]. 光学技术, 2022, 48(1): 60-64
作者姓名:郭明磊  官邦贵  秦炎福
作者单位:安徽科技学院电气与电子工程学院光电技术实验室,安徽蚌埠233030;南京师范大学物理与科学技术学院纳米光子学实验室,南京210097;安徽科技学院电气与电子工程学院光电技术实验室,安徽蚌埠233030
基金项目:国家自然科学基金项目(61475073);安徽省高校自然科学重点研究项目(KJ2020A0074);校引进与稳定人才基金项目(DQWD201801)。
摘    要:利用低折射率的二氧化硅和高折射率的钛酸钡微球透镜对蓝光刻录光碟的亚波长表面结构进行了显微成像实验,观察了两类微球在空间上与样品表面分离时的成像特性.实验结果表明:在微球透镜与样品表面分离0~6μm的空间范围内,微球透镜对亚波长纳米结构仍具有分辨能力,且放大作用明显.通过实验比较,发现在浸没方式、放大率大小、成像尺度范围...

关 键 词:微球  显微成像  亚波长  远场  光衍射

Far-field Sub-wavelength microscopic imaging properties of microsphere lenses
GUO Minglei,GUAN Banggui,Qin Yanfu. Far-field Sub-wavelength microscopic imaging properties of microsphere lenses[J]. Optical Technique, 2022, 48(1): 60-64
Authors:GUO Minglei  GUAN Banggui  Qin Yanfu
Affiliation:(Photoelectron Technology Laboratory,College of Electrical and Electronic Engineering,Anhui Science and Technology University,Bengbu 233030,China;Nanophotonics Laboratory,College of Physics and Science and Technology,Nanjing Normal University,Nanjing 210097,China)
Abstract:The Silica microsphere lens with low refractive index and BaTiO3 microsphere lenses with high refractive index are used to image the sub-wavelength surface structure of data-recorded Blu-ray disc.The imaging properties of the microsphere lenses when they are spatially separated from the surface of the sample are observed in the experiments.The experimental results illustrate that the sub-wavelength surface patterns can still be resolved by the microsphere lens with a significant magnification,when the distance between the microsphere lens and the sample surface is about 0~6μm.The comparative experiment shows that the high-index microsphere perform different imaging properties in immersing mode,magnification and imaging scale,et al.The simulation results of electric filed distribution of the microsphere lenses illuminate that the imaging properties of microspher lenses are greatly effected by the electric filed distribution,which provide basic for the revealing of the mechanism of super resolution of microsphere lenses.
Keywords:microsphere  microscopic imaging  Sub-wavelength  Far-filed  light diffraction
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