搜索到1405篇“ NANO-OPTICS“的相关文章
A historical overview of nano-optics:From near-field optics to plasmonics
2024年
Nano-optics is an emergent research field in physics that appeared in the 1980s,which deals with light–matter optical interactions at the nanometer scale.In early studies of nano-optics,the main concern focus is to obtain higher optical resolution over the diffraction limit.The researches of near-field imaging and spectroscopy based on scanning near-field optical microscopy(SNOM)are developed.The exploration of improving SNOM probe for near-field detection leads to the emergence of surface plasmons.In the sense of resolution and wider application,there has been a significant transition from seeking higher resolution microscopy to plasmonic near-field modulations in the nano-optics community during the nano-optic development.Nowadays,studies of nano-optics prefer the investigation of plasmonics in different material systems.In this article,the history of the development of near-field optics is briefly reviewed.The difficulties of conventional SNOM to achieve higher resolution are discussed.As an alternative solution,surface plasmons have shown the advantages of higher resolution,wider application,and flexible nano-optical modulation for new devices.The typical studies in different periods are introduced and characteristics of nano-optics in each stage are analyzed.In this way,the evolution progress from near-field optics to plasmonics of nano-optics research is presented.The future development of nano-optics is discussed then.
邓妙怡朱星
关键词:NANO-OPTICS
微纳光学中的光子自旋霍尔效应被引量:3
2023年
光的自旋轨道耦合现象在微纳尺度的光与物质相互作用中几乎无处不在。偶极辐射等非傍轴光在空间传播中具有自发自旋轨道耦合,当光遇到各向异性结构、磁性结构、手性结构,以及具有波长尺度空间不均匀的结构时,自旋轨道耦合现象也时常发生。对光的自旋深入研究不仅有利于新光学现象的发掘,还为微纳光场操纵提供了新途径。近些年来,基于几何相位的超构表面在新型自旋光控制中展示出了很多重要应用,实现了多维度、多波长的激光自旋控制,产生了纠缠光子、自旋依赖的偏振热光源等,也发展了一些基于光自旋的超灵敏测量手段。相比而言,光与无序微纳结构相互作用的研究则较少。无序结构内在的随机性使得该体系的自旋轨道耦合变得复杂,光场的表征需要考虑统计特性,为测量、分析带来了一定挑战。此外,随机系统的光子自旋霍尔效应机理还没有完全清楚,随机几何相位涨落或者涡旋都能使光产生自旋霍尔效应,但是两者有很大的物理差异。因此,光子自旋霍尔效应与无序几何相位之间的规律还有待深入探索。首先介绍光的自旋概念、不同体系下的基本自旋轨道耦合现象,然后分析以超构表面为平台研究的二维随机体系对光自旋轨道耦合与光子自旋霍尔效应的影响,包括各向异性无序、磁光涨落、涡旋、随机偶极子辐射等产生的光自旋分离现象。这些研究和分析有利于将来用光自旋霍尔信号作为新的探测和控制手段,研究相互作用体系的相变与演化。
冯娟王波陈险峰
关键词:光学涡旋几何相位
硅基混合表面等离子体纳米光波导及集成器件被引量:9
2014年
总结并展望了硅基混合表面等离子体纳米光波导及集成器件方面的理论和实验研究工作。首先介绍了几种硅基混合表面等离子体纳米光波导结构,其尺寸可小至100 nm以下,而传播长度达100μm量级;其次介绍了基于硅基混合表面等离子体纳米光波导的功分器、偏振分束器和谐振器等集成器件,其尺寸为亚微米量级;最后探讨了硅基混合表面等离子体纳米光波导与硅纳米线光波导的耦合及对其进行增益补偿。
管小伟吴昊戴道锌
关键词:表面等离子体硅纳米线
突破光学衍射极限,发展纳米光学和光子学被引量:18
2011年
信息技术已经进入纳米时代,纳米光学和光子学正是为满足快速和高密度信息技术的需求而产生、发展的。先进的纳米光学和光子学器件应该是高速、高分辨率和高集成的,形成各类光学和光子学芯片和盘片。由于器件最小特征尺寸和加工分辨率受限于光的衍射极限,现有技术已接近实用化技术的理论极限并且成本很高,只有突破光学衍射极限才能进一步发展纳米光学和光子学。在光的远场和近场应用超分辨率技术,是当前重要的前沿课题,它们的应用主要集中于信息技术领域,具有代表性的是纳米信息存储和光刻中的光学超分辨率技术等。
干福熹王阳
关键词:纳米光学纳米光子学超分辨率光刻
静电场中无限长均匀双层圆柱体的拉普拉斯方程解及其在纳米光学中的应用被引量:1
2011年
应用拉普拉斯方程求解静电场中无限长均匀双层圆柱体的电势及电场,并基于散射理论获得该结构颗粒的光学散射、吸收及消光系数.进一步计算了金纳米管的远场光谱和近场分布,其结果与经典的M ie散射理论计算结果完全一致.因此,该理论结果可以很好的被应用于纳米光学研究.
吴大建洪云刘晓峻
关键词:静电场拉普拉斯方程光散射
A novel nano-optics polarization beam splitter/combiner for telecom applications
A new polarization beam splitter/combiner is realized as a one dimensional metal grating structure with period...
Libing Zhou1
关键词:SUBWAVELENGTHGRATINGS
Simulation of novel tip-probe providing high intensity and small spot size with a small background light in nano-optics
A novel metallic tip-probe that gives high optical intensity and small spot size with a small background light...
Kazuo Tanaka
关键词:PLASMONSAPERTURESSIMULATION
Quantum optics and nano-optics teaching laboratory for the undergraduate curriculum: teaching quantum mechanics and nano-physics with photon counting instrumentation
At the Institute of Optics, University of Rochester (UR), we have adapted to the main challenge (the lack of s...
Svetlana G. Lukishova
3D Glass-Ceramic Templates for Micro-/Nano-Optics Realized via Laser Nanolithography and Pyrolysis
Ceramics play an important role in today's science and industry as it can withstand immense heat, mechanical a...
D. Gailevicius
OSA Topical Conference:The 4th Advances in Optoelectronics and Micro/nano-optics
2014年
17-20 September,2014,Xi′an,China The conference on Advances in Optoelectronics and Micro/nano-optics(AOM)is an OSA topical meeting focusing on micro/nano scale based optoelectronics and optics.The 1st AOM was held in 2009in Tianjin,organized by Nankai University,with Professor Guoguang Mu as the honorary conference chair,and Professors Xiaocong Yuan and Michael Fiddy as co-chairs.The 2nd AOM was held in 2010in Guangzhou,organized by South