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近场光学

近场光学的相关文献在1995年到2022年内共计210篇,主要集中在物理学、机械、仪表工业、无线电电子学、电信技术 等领域,其中期刊论文112篇、会议论文15篇、专利文献142865篇;相关期刊65种,包括山东师范大学学报(自然科学版)、国际学术动态、硅谷等; 相关会议14种,包括2009第八届中国国际纳米科技(湘潭)研讨会、2008非银盐影像技术及材料发展与应用学术研讨会、2006年二十一世纪中国光电产业发展论坛等;近场光学的相关文献由422位作者贡献,包括朱星、王佳、潘石等。

近场光学—发文量

期刊论文>

论文:112 占比:0.08%

会议论文>

论文:15 占比:0.01%

专利文献>

论文:142865 占比:99.91%

总计:142992篇

近场光学—发文趋势图

近场光学

-研究学者

  • 朱星
  • 王佳
  • 潘石
  • 田芊
  • 明海
  • 简国树
  • 许吉英
  • 吴世法
  • 宋国峰
  • 甘巧强
  • 期刊论文
  • 会议论文
  • 专利文献

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    • 陈楠; 王玥; 刘涛; 夏洋
    • 摘要: 基于扫描探针技术设计搭建了一套散射式扫描近场光学显微系统。基于搭建的系统结构和近场信号探测原理,理论分析和实验讨论了不同因素的干扰、解调阶次、聚焦光斑等因素对近场光学信号提取的影响。为进一步验证装置性能,对纳米金颗粒和机械剥离的六方氮化硼样品进行了测试。结果表明,所搭建的装置实现了10 nm的空间分辨率,可以清晰地观察到六方氮化硼表面声子极化激元在传播-反射过程中形成的驻波现象,展示了该技术在低维纳米材料光学表征中应用的巨大应用潜力。
    • 秦康; 袁列荣; 谭骏; 彭胜; 王前进; 张学进; 陆延青; 朱永元
    • 摘要: 灵敏度高、可重复性好的固态表面增强拉曼散射基板可作为生物医学、环境科学、化学化工、纳米科技等领域的生化感测器,具有十分重要的实际应用价值.传统的表面增强拉曼散射基于金属颗粒提供的局域表面等离谐振这一物理机制,但其组装不易且模式损耗大.本文基于周期性金属亚波长结构,构建增强拉曼散射信号的"热点",同时保证测量信号的可重复性.从表面光子能带结构出发,提出了区别于局域表面等离谐振的其他三种增强机制:表面等离子极化激元带边增强机制、间隙等离子极化激元增强机制以及二者相耦合增强机制.采用一定的工艺,提高金属表面平整度,抑制表面等离子极化激元的传播损耗,从而提高表面增强拉曼散射的增强因子.理论结合实验,且二者一致性好.研究结果有望将表面增强拉曼散射光谱技术进一步向实用化方向推进.
    • 娄前峰; 刘子源; 薛磊; 陶海岩; 林景全
    • 摘要: 在飞秒激光加工过程中,如何突破衍射极限一直都是一个重要问题.近年来,纳米小球辅助飞秒激光近场超衍射加工逐渐被认识并发展起来,这一加工方法可以在基底表面产生小于入射激光衍射极限尺度的纳米孔洞,并可以实现大面积加工.从金属纳米小球和介电纳米小球这两个方面入手,分别对它们辅助飞秒激光近场加工的研究进行介绍.%During the femtosecond laser processing, how to break through the diffraction limit has always been an important problem. In recent years, nanospheres auxiliary femtosecond laser near field processing with characteristic size beyond the diffraction limit is recognized and developed gradually. It can fabricate nanoholes on the substrate surface of which scale is smaller than the incident laser diffraction limit, and can realize large area processing. In this paper, we will focus on the metal nanospheres and dielectric nanospheres, and introduce the study of nanospheres assisted femtosecond laser near field processing.
    • 金涛; 谢孟宇; 冀胡东; 吴丹丹; 郑继红
    • 摘要: 提出一种利用镀有金属薄膜的V形无孔光学探针构建的扫描近场光学显微镜,将圆偏振光注入镀有金属薄膜的V形槽内在针尖处形成近场照射光源,并利用探针收集样品表面近场光信号.理论分析表明:探针收集的近场和远场反射光之间存在一定的相位差,该相位差与探针机械结构、探针与样品的距离有关,可通过探针与样品之间的距离加以控制,因此利用偏振性器件可有效抑制远场光强.实验中,探针与样品之间的距离通过范德华力回馈控制,探针操作在接触模式,实验结果显示所测近场与远场光相位相差57°,近场光学图像横向分辨率优于12 nm.%A scanning near-field optical microscope (SNOM) based on an apertureless optical probe was presented. The probe had a V shape hollow on its top and coated with metal film. Illumination near-field light (NFL) will emit from the apex of probe when far-field light (FFL) is focused on the hollow. There is a phase difference between collected NFL and FFL, which relates to the distance between probe and sample. The collected FFL can be eliminated using a Glan-Taylor analyzer according to the phase difference. The experimental results show the phase difference of this system is 57° . The spatial resolution of SNCOM is less than 12 nm.
    • 焦悦; 陶海岩; 季博宇; 宋晓伟; 林景全
    • 摘要: 利用纳米粒子辅助对飞秒激光能量进行空间局域化,使其在基底表面诱导产生纳米尺度的近场增强,这对超衍射极限微结构加工具有重要意义.目前对于粒子阵列诱导飞秒激光纳米孔加工的研究仅限于金属Au粒子及低折射率聚苯乙烯介电粒子等,本文提出并开展了应用高折射率TiO2介电粒子阵列作为辅助诱导激光近场增强从而进行飞秒激光超衍射纳米孔加工的研究.对TiO2介电粒子阵列在Si,Pt及SiO2表面的近场强度分布进行了数值模拟,研究其基底表面近场增强的规律及物理过程.研究结果发现,使用硅基底时,阵列与单一TiO2球形粒子相比其近场增强仅下降约30%;相对于入射激光强度而言,在直径约为100 nm的空间范围内获得140倍的近场增强,这一现象可用于百纳米孔的激光加工.同时在其他典型基底的理论计算结果中也表明,几乎在所有金属及介电材料表面均可以实现良好的百纳米空间范围内的近场增强,并且具有近场随着基底折射率变大而增强的规律.这些现象的产生归因于TiO2粒子中磁四极振荡产生的激光前向场增强及粒子与基底的耦合作用.进一步引入镜像电荷模型对基底光学参数对其表面近场增强的影响规律进行了分析和解释.本文的模拟结果对飞秒激光近场超衍射极限纳米加工的应用有着重要的意义.%Optical near field enhancement on substrate can be achieved by localizing femtosecond laser energy with nanopar-ticles. The enhanced field is located in the region between nanoparticles and the substrate. The localized femtosecond optical field is of great significance for fabricating the microano structure with characteristic size beyond the diffraction limit. Up to now, femtosecond processing nanohole assisted by particle array is only possible for metal particle (Au) and low-refractive-index dielectric polystyrene particle. However, previous research results show that it cannot be realized for metal particle arrays (Au) to form periodic nanohole arrays, and it is limited for polystyrene particle to choose the corresponding substrate. In this paper, a novel method is proposed, in which high refractive index TiO2 arrayed particles are placed on the substrate to achieve laser induced near field enhancement. This makes feasible the nanoscale processing beyond the diffraction limit. In this paper, near field distributions of TiO2 particle array on Si, Pt and SiO2 substrates are simulated by the finite-difference time-domain (FDTD) method. The results show that TiO2 particles concentrate the laser energy to a region with a diameter of 100 nm around the particle and the near field enhancement is 140 times higher than the incident laser intensity, which is beneficial to fabricating the nanostructure of super diffraction limit, such as sub-hundred nanometer nanohole ablation by femtosecond laser. For Si substrate, the near field enhancement is only about 30% lower for TiO2 particle array than that for single TiO2 particle. In order to explore the influence mechanism of the substrate material parameters on the near field enhancement of TiO2 nanoparticle array, we further simulate the enhancement factor for the substrates of different refractive indices. It is found that the near field is enhanced with the increase of substrate refractive index, and this is attributed to an increased interaction of the particle with the near field of substrate and the scattering effect in which the TiO2 particle supports forward near field intensity pattern. Moreover, the image charge model is introduced to analyze the effect of substrate optical parameters on local field enhancement. Results in this paper can be applied to most metals as well as dielectric substrate surfaces, and they open a new way for femtosecond laser near field nano-processing with characteristic size beyond the diffraction limit.
    • 张学进; 陆延青; 陈延峰; 朱永元; 祝世宁
    • 摘要: 作为束缚于表面或界面的电磁波与极性元激发的耦合模量子,表面极化激元是克服衍射极限的核心物理.在紫外、可见以及近红外波段,表面等离子极化激元展现出了亚波长特性,具有高分辨成像等应用,并发展成为"表面等离子极化激元亚波长光学"学科;在中红外波段,表面声子极化激元发挥着同样的作用.太赫兹波段曾是人类认识的空白区域,近三十年来得以高速发展,其战略意义重大.具有克服衍射极限能力的太赫兹表面极化激元同样是小型化与集成化太赫兹器件,以及太赫兹超高分辨成像的重要物理基础.近几年来,对以石墨烯为代表的二维材料的研究突飞猛进,诞生了"石墨烯表面等离子极化激元亚波长光学"这门学科,并贡献于太赫兹领域.本文对可在太赫兹波段工作的人工超构材料、掺杂半导体、二维电子气、二维材料、拓扑绝缘体等结构材料的表面极化激元进行了较为全面的总结与介绍,为研制克服衍射极限的太赫兹集成光子学器件提供可资借鉴的物理基础.%Enormous efforts have been made to manipulate the light-matter interactions, especially in sub-diffraction-limited space, leading to miniaturized and integrated photonic devices. In physics, an elementary excitation, called polariton, which is the quantum of the coupled photon and polar elementary excitation wave field, underlies the light-matter interaction. In the dispersion relation, polaritons behave as anti-crossing interacting resonance. Surface polaritons provide ultra-confinement of electromagnetic field at the interface, opening up possibilities for sub-diffraction-limited devices, and various field enhancement effects. In the electromagnetic spectra, terahertz (THz) regime was called THz gap before the 1990s, but has now been thrust into the limelight with great significance. This review is devoted to the emerging but rapidly developing field of sub-diffraction-limited THz photonics, with an emphasis on the materials and the physics of surface polaritons. A large breadth of different flavours of materials and surface polaritonic modes have been summarized. The former includes metallic, dielectric, semiconductor, two-dimensional (2D) materials, metamaterials, etc.; the latter covers surface phonon-, plasmon-, and hybrid polaritons. In the THz regime, 2D surface plasmon polariton and artificial surface phonon polaritons offer more attractive advantages in ability to obtain low-loss, tunable, ultracompact light-matter modes.
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