首页> 外文期刊>Applied physics. B, Lasers and optics >Single-metal-cluster local imaging: polarized scattered electric field calculation compared to the field's modulus and phase observed in the optical near-field
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Single-metal-cluster local imaging: polarized scattered electric field calculation compared to the field's modulus and phase observed in the optical near-field

机译:单金属簇局部成像:极化散射电场计算与在光学近场中观察到的场模量和相位相比

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摘要

Simultaneous topographical and near-field optical imaging have been performed on single gold particles of diameters close to 12 nm. The optical source is a linearly polarized laser diode operating at λ = 780 nm away from the plasmon resonance of the particles. The experimental optical image is recorded with an apertureless scanning near-field optical microscope (ASNOM) operating in transmission mode. It is compared to the components of the polarized scattered electric field around a single cluster calculated using Mie formalism. We show that the tip used in the experiments is sensitive to the axial component of the scattered field, thus allowing us to obtain the amplitude and the phase of the local field. Our derivation brings out new information, usually shaded when applied to an ensemble of particles. In particular, the dipole model widely used to describe the scattered field by a spherical particle is not suitable to describe the three components of the scattered field in the near zone. Our results are of interest for fundamental studies of the optical properties of single metal clusters and the control of local phenomena such as enhancement, extinction, etc.
机译:已经对直径接近12 nm的单个金粒子进行了地形和近场光学成像。光源是线性偏振激光二极管,工作波长为λ= 780 nm,远离粒子的等离子体共振。用在透射模式下运行的无孔扫描近场光学显微镜(ASNOM)记录实验光学图像。将其与使用Mie形式主义计算的单个簇周围的极化散射电场的分量进行比较。我们表明,实验中使用的尖端对散射场的轴向分量很敏感,从而使我们可以获得局部场的幅度和相位。我们的推导得出了新的信息,通常将它们应用于一组粒子时会被阴影化。特别地,广泛用于描述球形粒子散射场的偶极子模型不适用于描述近区散射场的三个分量。我们的研究结果对于基础研究单个金属团簇的光学性质以及控制局部现象(例如增强,消光等)非常有用。

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