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Ultrafast optical relaxation dynamics in metallic nanoparticles: from bulk-like toward spatial confinement regime

机译:金属纳米粒子中的超快光学弛豫动力学:从块状到空间限制

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摘要

A detailed analysis of the ultrafast optical response of gallium and tin clusters, embedded in a dielectric matrix, with sizes ranging from the sub-micrometer to the nanometer region is presented. Two distinct regimes of relaxation dynamics depending upon particle radius are observed. Particles with a radius greater than the mean electronic free path present similar temporal evolution of the excitation decay with superimposed damped oscillations, interpreted in terms of acoustic waves generated inside the particle. For nanoparticles with a radius smaller than the mean electronic free path, a clear size dependence of relaxation dynamics is observed. This is a strong indication of an efficient electrons-surface phonon interaction in this regime.
机译:详细分析了嵌入在介电基质中的镓和锡簇的超快光学响应,其尺寸范围从亚微米到纳米区域。观察到取决于粒子半径的两种不同的弛豫动力学方案。半径大于平均电子自由路径的粒子呈现出类似的激励衰减随时间变化的过程,叠加了衰减的振动,以粒子内部产生的声波来解释。对于半径小于平均电子自由路径的纳米颗粒,观察到松弛动力学的明显尺寸依赖性。这强烈表明了在这种情况下有效的电子表面声子相互作用。

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