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Quantification of surface roughness effect on elastically backscattered electrons

机译:量化表面粗糙度对弹性反向散射电子的影响

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摘要

Electron inelastic mean free path can be obtained from a measured elastic peak electron spectroscopy spectrum combined with a Monte Carlo simulation. It is thus necessary to know the influence of various experimental factors to the measured and calculated results. This work investigates the effect of the surface roughness or the surface topography on the intensity of the elastic peak. A Monte Carlo simulation, by taking into account of realistic surface roughness for both Gaussian and non- Gaussian type rough surfaces experimentally prepared, has been employed to study the surface topography effect. The simulations of elastic peak electron spectroscopy were performed for both planar and rough Al and Cu surfaces and for varied primary energies ranging from 200 to 2000 eV. To quantify the surface roughness effect, the surface roughness parameter is introduced according to the ratio of elastic peak intensities between a rough surface and an ideal planar surface. Simulation results have shown that surface roughness parameter is important in a certain range of emission angle and particularly for large emission angles. For grazing emission, the elastic peak intensity can be largely enhanced by roughness even at nanometer scale.
机译:电子非弹性平均自由程可从测得的弹性峰电子光谱光谱结合蒙特卡罗模拟获得。因此,有必要知道各种实验因素对测量和计算结果的影响。这项工作研究了表面粗糙度或表面形貌对弹性峰强度的影响。考虑到实验制备的高斯型和非高斯型粗糙表面的实际表面粗糙度,采用了蒙特卡罗模拟,以研究表面形貌效应。对平面和粗糙的Al和Cu表面以及200至2000 eV范围内变化的一次能量进行了弹性峰值电子光谱的模拟。为了量化表面粗糙度效应,根据粗糙表面与理想平面之间的弹性峰强度之比引入表面粗糙度参数。仿真结果表明,在一定的出射角范围内,表面粗糙度参数非常重要,特别是对于大的出射角。对于掠射发射,即使在纳米尺度下,弹性峰值强度也可以通过粗糙度大大提高。

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