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Vibrational modes of metal nanoshells and bimetallic core-shell nanoparticles

机译:金属纳米壳和双金属核壳纳米粒子的振动模式

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We theoretically study the spectrum of radial vibrational modes in composite metal nanostructures such as bimetallic core-shell particles and metal nanoshells with dielectric core in an environment. We calculate frequencies and damping rates of fundamental (breathing) modes for these nanostructures along with those of two higher-order modes. For metal nanoshells, we find that the breathing mode frequency is always lower than the one for solid particles of the same size, while the damping is higher and increases with a reduction in the shell thickness. We identify two regimes that can be characterized as weakly damped and overdamped vibrations in the presence of external medium. For bimetallic particles, we find periodic dependence of frequency and damping rate on the shell thickness with period being determined by the mode number. For both types of nanostructures, the frequency of higher modes is nearly independent of the environment, while the damping rate shows a strong sensitivity to the outside medium. (c) 2008 American Institute of Physics.
机译:我们从理论上研究了环境中复合金属纳米结构(如双金属核-壳颗粒和具有介电核的金属纳米壳)中径向振动模式的频谱。我们计算这些纳米结构的基本(呼吸)模式的频率和阻尼率,以及两个高阶模式的频率和阻尼率。对于金属纳米壳,我们发现呼吸模式频率始终低于相同尺寸的固体颗粒的呼吸模式频率,而阻尼更高,并且随着壳厚度的减小而增加。我们确定了两种存在外部介质的情况,它们可以表现为弱阻尼和过阻尼振动。对于双金属颗粒,我们发现频率和阻尼率与壳厚度的周期相关性,周期由模式编号确定。对于这两种类型的纳米结构,较高模式的频率几乎与环境无关,而阻尼率则显示出对外部介质的强烈敏感性。 (c)2008年美国物理研究所。

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