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首页> 外文期刊>Japanese Journal of Applied Physics. Part 1, Regular Papers & Short Notes >Imaging Properties of Three Dimensional Aperture Near-Field Scanning Optical Microscopy and Optimized Near-Field Fiber Probe Designs
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Imaging Properties of Three Dimensional Aperture Near-Field Scanning Optical Microscopy and Optimized Near-Field Fiber Probe Designs

机译:三维孔径近场扫描光学显微镜的成像特性和优化的近场光纤探头设计

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摘要

A series of finite difference time domain (FDTD) methods for obtaining more insight on the near-field distribution of subwavelength aperture and fiber probes are numerically investigated. The treatment of dispersive materials in a time-domain-dependent fashion is considered. Several significant factors are also considered successively, e.g., the near-field distribution of subwavelength aperture in an infinite aluminum plane with sample interactions, the characteristics between the near-field distribution and the depolarization phenomenon, different types of three-dimensional tip (noncoated and metal-coated) used to illuminate a photosensitive sample and the polarization of an incident electromagnetic field. Moreover, the FDTD designs of two types of improved probe are illustrated and a suggestion for fabricating an optimal probe is given. Our proposed structures will yield useful information and guidelines for designing high-performance near-field probes.
机译:数值研究了一系列有限时域(FDTD)方法,以获取有关亚波长孔径和光纤探头近场分布的更多信息。考虑以时域依赖性方式处理分散材料。还连续考虑了几个重要因素,例如,无限铝平面中具有样品相互作用的亚波长孔径的近场分布,近场分布与去极化现象之间的特性,不同类型的三维尖端(未镀膜的和未镀膜的)。金属涂层)用于照亮光敏样品和入射电磁场的极化。此外,说明了两种改进探针的FDTD设计,并给出了制造最佳探针的建议。我们提出的结构将为设计高性能近场探头提供有用的信息和指导。

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