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Beyond the static corrugation model: Dynamic surfaces with the embedded atom method

机译:超出静态波纹模型:具有嵌入式原子方法的动态曲面

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摘要

The D-2 on Cu(111) system has for many years been one of the major benchmark systems for surface scientists. Generating surface configurations using the embedded atom method (EAM), we investigate the quality of the chemically accurate static corrugation model (SCM) for including surface temperature effects, with a focus on the random displacement approach to its distorted surface generation. With this EAM potential, we also treat the Cu(111) surface of our system fully dynamically and shine a further light on not only the quality of the SCM sudden approach but also the limited effect of energy exchange with the surface. Reaction and (in)elastic scattering probability curves, as well as simulated time-of-flight spectra, show good agreement with both earlier works and experimental results, with surface reactions showing a preference for surface atoms displaced away from the incoming molecule. The good agreement with the non-static surface model also further establishes the limited effect of energy exchange on not only the reaction but also on the elastic and inelastic scattering probabilities, even though some molecular translational energy is deposited into the surface.
机译:多年来,D-2 on Cu(111)系统一直是表面科学家的主要基准系统之一。利用嵌入原子法(EAM)生成表面构型,我们研究了化学精确静态波纹模型(SCM)的质量,包括表面温度效应,重点研究了随机位移法生成扭曲表面。利用这一EAM势,我们还对系统的Cu(111)表面进行了完全动态的处理,并进一步阐明了SCM突然接近的质量,以及与表面的能量交换的有限影响。反应和(in)弹性散射概率曲线,以及模拟的飞行时间谱,显示出与早期工作和实验结果很好的一致性,表面反应显示出对远离入射分子的表面原子的偏好。与非静态表面模型的良好一致性也进一步确定了能量交换不仅对反应,而且对弹性和非弹性散射概率的有限影响,即使一些分子平动能沉积到表面。

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