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Coherent acoustic mode oscillation and damping in silver nanoparticles

机译:银纳米粒子的相干声模振荡和阻尼

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摘要

Using a femtosecond pump-probe technique, the fundamental mechanical radial mode of silver nanoparticles is coherently excited and probed via its interaction with the electron gas. The mechanical oscillations are launched by an indirect displacive process and are detected via the induced modulation of the surface plasmon resonance frequency. The measured fundamental radial mode period and damping time are found to be proportional to the nanoparticle radius in the range of 3-15 nm, in agreement with theoretical predictions.
机译:使用飞秒泵浦探针技术,银纳米粒子的基本机械径向模式通过与电子气体的相互作用而被相干地激发和探测。机械振荡是通过间接置换过程引发的,并通过表面等离振子共振频率的感应调制来检测。与理论预测一致,发现测得的基本径向模式周期和阻尼时间与纳米粒子半径成比例,范围为3-15 nm。

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