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首页> 外文期刊>Physical review, E. Statistical physics, plasmas, fluids, and related interdisciplinary topics >Diffraction by a small aperture in conical geometry: Application to metal-coated tips used in near-field scanning optical microscopy - art. no. 046611
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Diffraction by a small aperture in conical geometry: Application to metal-coated tips used in near-field scanning optical microscopy - art. no. 046611

机译:圆锥形几何中的小孔引起的衍射:应用于近场扫描光学显微镜中的金属涂层尖端-艺术。没有。 046611

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摘要

Light diffraction through a subwavelength aperture located at the apex of a metallic screen with conical geometry is investigated theoretically. A method based on a multipole field expansion is developed to solve Maxwell's equations analytically using boundary conditions adapted both for the conical geometry and for the finite conductivity of a real metal. The topological properties of the diffracted field are discussed in detail and compared to those of the field diffracted through a small aperture in a flat screen, i.e., the Bethe problem. The model is applied to coated, conically tapered optical fiber tips that are used in near-field scanning optical microscopy. It is demonstrated that such tips behave over a large portion of space like a simple combination of two effective dipoles located in the apex plane (an electric dipole and a magnetic dipole parallel to the incident fields at the apex) whose exact expressions are determined. However, the large "backward" emission in the P plane-a salient experimental fact that has remained unexplained so far-is recovered in our analysis, which goes beyond the two-dipole approximation. [References: 43]
机译:从理论上研究了通过具有圆锥形几何形状的金属屏幕顶端处的亚波长孔径的光衍射。开发了一种基于多极场扩展的方法,以使用既适合圆锥几何形状又适合真实金属有限电导率的边界条件来解析求解麦克斯韦方程组的方法。详细讨论了衍射场的拓扑特性,并将其与通过平板中的小孔衍射的场(即贝特问题)的拓扑特性进行了比较。该模型适用于涂覆的圆锥形锥形光纤头,用于近场扫描光学显微镜。证明了这样的尖端在空间的大部分上表现得像位于顶点平面中的两个有效偶极子的简单组合(平行于顶点处的入射场的电偶极子和磁偶极子)的确切表达式已确定。但是,在我们的分析中,我们恢复了P平面中较大的“向后”发射(这是迄今为止尚无法解释的显着实验事实),它超出了二偶极子近似。 [参考:43]

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