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Optical near field spectral analysis of single metal nanoparticles

机译:单金属纳米粒子的光学近场光谱分析

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The scattering and absorption properties of ellipsoidal geometry (spheres, rods, and disks) metal nanoparticles using modified long wavelength approximation method (MLWA) is presented. The validity of this technique is verified by comparison to the exact solution (Mie theory). For spherical particles, up to 16-nm diameter of gold and 8-nm diameter of silver, we confirm that our approach yields an exact correspondence with Mie theory, and gives an approximation error of less than 15% for gold and silver particles with diameters approaching 40nm and 18nm respectively. For core/shell particles by varying the relative dimensions of core and shell, the optical resonance of these nanoparticles can be precisely and systematically varied over a broad region ranging from the near-ultraviolet to the mid-infrared. These making core/shell nanoparticles attractive as functional materials for many applications. A model for core/shell nanoparticles is presented to investigate shell thickness effects and gives an approximation error of less than 9.49% for silica-gold particles with diameters approaching 36–40 nm.
机译:提出了使用改进的长波长近似方法(MLWA)的椭圆形几何形状(球体,杆和盘状)金属纳米粒子的散射和吸收特性。通过与精确解(米氏理论)进行比较,验证了该技术的有效性。对于球形颗粒,金的直径最大为16 nm,银的直径最大为8 nm,我们确认我们的方法与Mie理论完全吻合,对于直径为10 mm的金和银颗粒,其近似误差小于15%分别接近40nm和18nm。对于通过改变核和壳的相对尺寸的核/壳颗粒,这些纳米颗粒的光学共振可以在从近紫外到中红外的宽范围内精确而系统地变化。这些使核/壳纳米颗粒成为许多应用中的功能材料具有吸引力。提出了核/壳纳米颗粒的模型来研究壳厚度的影响,对于直径接近36–40 nm的硅金颗粒,其近似误差小于9.49%。

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