Helium 1s photoemission and photon stimulated desorption of He+ ions by double excitations from adsorbed helium layers: Zero-point motion and matrix effects
S. J. Riepl, S. Kossler, J. Braun, J. Minár, J. V. Barth, P. Feulner
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引用次数: 0
Abstract
Excited with p-polarized light, the near-edge He 1s photoemission signal from monolayers of He adsorbed on the close-packed surfaces of silver, copper, ruthenium, and platinum shows periodic splitting with photoelectron momentum. By applying a simple single scattering model, we explain this effect by zero-point motion induced variation of the photo hole’s image charge screening and interference of the photoelectron’s final state wavefunction. Relativistic one-step photoemission calculations support this interpretation. In the second part of our study, we investigate neutral double excitations of He bilayers adsorbed on platinum by monitoring the emission of He+ ions. We identify strong matrix and zero-point motion effects, namely resonances absent for isolated He, density and light polarization dependence, line broadening and a correlation of excitation and kinetic ion-energy.
在 p 偏振光的激发下,吸附在银、铜、钌和铂的紧密堆积表面上的单层 He 的近边 He 1s 光发射信号会随着光电子动量的变化而出现周期性分裂。通过应用一个简单的单散射模型,我们用零点运动引起的光洞图像电荷屏蔽变化和光电子终态波函数的干涉来解释这种效应。相对论一步光发射计算支持这一解释。在研究的第二部分,我们通过监测 He+ 离子的发射,研究了吸附在铂上的 He 双层的中性双激发。我们发现了强烈的矩阵和零点运动效应,即孤立 He 不存在的共振、密度和光偏振依赖性、线宽以及激发和离子动能的相关性。