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Optical properties of gold spheroidal particles and nanoshells: Effect of the external dielectric medium

机译:金球形颗粒和纳米壳的光学性质:外部介电介质的影响

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Dependence of optical properties of gold solid nanospheroids and spheroidal nanoshells on the dielectric environment has been studied in comparison with standard spherical models, i.e. with solid spheres and spherical nanoshells, respectively. The extinction and light scattering spectra were calculated using Mie theory, T-matrix, and the separation of variables methods. The sensitivity of plasmon resonance (PR) tuning to variations of the refractive index (n=1 .3-1.7) was studied for particles with different equivolume size. In the case of nanoshells, the metal layer thickness was also varied. For nanoparticles with 15-nm equivolume diameter, the maximal PR shifts are observed in the case of spheroidal nanoshells and the calculated PR shifts decrease in the order: spheroidal nanoshells, solid spheroids, and spherical nanoshells. For particles with the 60-nm equivolume diameter, almost equal PR shifts are observed both for solid spheroids and spherical nanoshells, whereas the spheroidal nanoshells exhibit the maximal PR shifts. Other things being equal, the PR of silver nanoparticles is more sensitive to the dielectric environment as compared to the gold counterparts.
机译:与标准球形模型,即分别与固体球形和球形纳米壳相比,已经研究了金固体纳米球形和球形纳米壳的光学性质对介电环境的依赖性。使用Mie理论,T矩阵和变量分离方法计算消光光谱和光散射光谱。对于具有不同等体积尺寸的粒子,研究了等离振子共振(PR)调谐对折射率变化(n = 1 .3-1.7)的敏感性。在纳米壳的情况下,金属层的厚度也变化。对于等体积直径为15 nm的纳米粒子,在球形纳米壳的情况下观察到最大PR位移,并且计算出的PR位移按以下顺序减小:球形纳米壳,固体球形和球形纳米壳。对于等体积直径为60 nm的颗粒,实心球体和球形纳米壳都观察到几乎相等的PR位移,而球形纳米壳则表现出最大的PR位移。在其他条件相同的情况下,与金对应物相比,银纳米颗粒的PR对介电环境更为敏感。

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