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Modeling near-field properties of plasmonic nanoparticles:a surface integral approach

机译:质粒纳米粒子近场性质的建模:表面整体方法

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Recent developments in nanofabrication and optical near-field metrology have faced complementary modeling techniques with new demands. We present a surface integral formulation that accurately describes the extreme near-field of a plasmonic nanoparticle in addition to its far-field properties. Flexible surface meshing gives precise control over even complex geometries allowing investigation of the effects of fabrication accuracy and material homogeneity on a particle's optical response. Using this technique, the influence of a particle's symmetry and shape on surrounding "hot spots" of extremely large field enhancement is explored, giving insight into the mechanisms of surface enhanced Raman scattering and single-molecule detection techniques.
机译:纳米制造和光学近场计量的最新进程面临着具有新需求的互补建模技术。我们提出了一种表面整体的制剂,其除了其远场性能外,精确地描述了等离子体纳米粒子的极端近场。柔性表面啮合使得精确控制甚至复杂的几何形状,允许研究制造精度和材料均匀性对粒子的光学响应的​​影响。利用这种技术,探讨了粒子对称性和形状对极大的田间增强围绕“热点”的影响,深入了解表面增强的拉曼散射机制和单分子检测技术。

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