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Femtosecond photoemission study of ultrafast electron dynamics in single-crystal Au(111) films

机译:飞秒光发射研究单晶Au(111)薄膜中的超快电子动力学

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The energy-dependent relaxation of photoexcited electrons has been measured by time-resolved two-photon photoemission spectroscopy on single-crystal Au(lll) films with thickness ranging from 150 to 3000 Angstrom. It is found that the energy-dependent relaxation does not show any significant thickness dependence, which indicates that electron transport is a much slower dynamical process in the near-surface region than expected from bulk properties. Furthermore, lifetimes of the photoexcited electrons can be fitted well by the Fermi-liquid theory with a scaling factor plus an effective upper lifetime. This observation enables separation of electron-electron scattering, and to a lesser extent electron-phonon scattering, processes from electron-transport effects on the surface dynamics. [S0163-1829(98)04840-1]. [References: 17]
机译:已经通过时间分辨双光子光发射光谱法在厚度范围为150至3000埃的单晶Au(III)膜上测量了光激发电子的能量依赖性弛豫。发现与能量相关的弛豫没有显示任何明显的厚度相关性,这表明电子传输在近表面区域中的动力学过程比从体性质中预期的慢得多。此外,光致电子的寿命可以通过费米液体理论以比例因子加上有效的上寿命来很好地拟合。该观察使得能够将电子-电子散射以及在较小程度上的电子-声子散射从对表面动力学的电子传输效应中分离出来。 [S0163-1829(98)04840-1]。 [参考:17]

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