首页> 外文会议>Conference on Physical Chemistry of Interfaces and Nanomaterials, Jul 7-9, 2002, Seattle, Washington, USA >Photophysics of Metal Nanoparticles: Heat Dissipation and Coherent Excitation of Phonon Modes
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Photophysics of Metal Nanoparticles: Heat Dissipation and Coherent Excitation of Phonon Modes

机译:金属纳米粒子的光物理:声子模的散热和相干激发

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摘要

Ultrafast laser excitation of metal nanoparticles can create temperature increases of many hundreds of Kelvin. The aim of this paper is to provide an overview of our recent experimental studies of heat dissipation and the coherent generation of acoustic phonon modes in the particles. Our results show that the rate of heat dissipation depends on the surface area of the particles, and that both impulsive lattice heating and hot-electron pressure contribute to phonon excitation. The measured periods also depend on the pump laser intensity: higher intensities yield slower periods. This softening of the coherently excited phonon modes is due to the temperature dependence of the elastic constants of the particles.
机译:金属纳米粒子的超快激光激发会导致温度升高数百开尔文。本文的目的是概述我们最近对散热和颗粒中声子声子模式的相干生成的实验研究。我们的结果表明,散热速率取决于粒子的表面积,并且脉冲晶格加热和热电子压力均会促进声子的激发。测量的周期还取决于泵浦激光器的强度:强度越高,周期越慢。相干激发的声子模的这种软化是由于颗粒的弹性常数与温度有关。

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