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Effects of resolution and friction in the interpretation of QHAS measurements

机译:分辨率和摩擦对QHAS测量结果的解释

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We use Langevin molecular dynamics (MD) simulations to improve the picture of the processes that contribute to QHAS broadening,as a function of momentum transfer at the crystal.We use a simulation of realistic damped vibrational motion in a harmonic well to establish the contributions to QHAS measurements due to both vibrational motion and intracell diffusion (usually referred to as vibrational dephasing).We demonstrate the experimental conditions under which such contributions are likely to be important.These results are compared with those from a simulation of thermal diffusion over a sinusoidally corrugated potential.We show that resolution and atom-surface "friction" play an important role in determining the form of QHAS measurements and we demonstrate that there is no simple relationship between the "activation energy" derived from an Arrhenius plot of QHAS data and the adiabatic potential barrier height.MD simulations are therefore necessary to perform a complete analysis of the data.Finally,we discuss the application of our results to more sophisticated potentials,particularly those with multiple adsorption sites.
机译:我们使用Langevin分子动力学(MD)模拟来改善对QHAS扩展有贡献的过程的图像,该过程是晶体动量传递的函数。我们使用谐波井中的实际阻尼振动运动模拟来建立对由振动运动和细胞内扩散引起的QHAS测量(通常称为振动移相)我们证明了在这种条件下可能发挥重要作用的实验条件,并将这些结果与正弦波纹状热扩散的模拟结果进行了比较我们表明,分辨率和原子表面的“摩擦”在确定QHAS测量形式方面起着重要作用,并且我们证明,从QHAS数据的阿伦尼乌斯图得出的“活化能”与绝热之间没有简单的关系。势垒高度。因此,必须进行MD模拟才能完整分析最后,我们讨论了将结果应用于更复杂的电势,尤其是具有多个吸附位的电势。

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