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Angular straggling in grazing scattering of fast He-atoms from an Al(111)-surface

机译:从Al(111)表面掠射快速He原子的掠角散射

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We have studied the scattering of 2.3-8.0 keV neutral He-atoms from Al(111) under glancing angles of incidence (0.4 degrees-2 degrees to the surface plane). The polar angular distributions of scattered particles, measured in the plane defined by the incident beam direction and the surface normal, show a peak for specular reflection and exhibit small widths (about 0.1 degrees FWHM for 0.4 degrees incidence angle). Computer simulations reproduce the experiments in detail, showing that the angular straggling is caused by multiple scattering at 1) thermally displaced surface atoms, and 2) conduction electrons, where the latter mechanism seems to be dominant for small incidence angles. At high beam energies the observed angular straggling is larger than the simulated one, which may be due to fluctuations in the charge state of the projectiles and electronic excitations of the target. [References: 28]
机译:我们研究了在掠射入射角(相对于表面平面为0.4度至2度)下从Al(111)散射2.3-8.0 keV中性He原子的情况。在由入射光束方向和表面法线定义的平面中测量的散射粒子的极角分布显示出镜面反射的峰值,并显示出较小的宽度(对于0.4度的入射角,大约为0.1 FWHM)。计算机模拟详细地再现了实验,表明角散乱是由1)热位移的表面原子和2)传导电子的多重散射引起的,后者对于小的入射角似乎是主要的。在高束能量下,观察到的角度散乱大于模拟的散乱,这可能是由于弹丸的电荷状态波动和目标的电子激发所致。 [参考:28]

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