首页> 外文期刊>Bulletin of the Korean Chemical Society >3D Generalized Langevin Equation (GLE) Approach to Gas-Surface Energy Transfer : Model H + H ?? H2/Si(100)-(2??1)
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3D Generalized Langevin Equation (GLE) Approach to Gas-Surface Energy Transfer : Model H + H ?? H2/Si(100)-(2??1)

机译:气体表面能量转移的3D广义Langevin方程(GLE)方法:H + H模型H 2 / Si(100)-(2 ?? 1)

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we have proposed a three-dimensional GLE approach to gas-surface reactive scattering, model H + H ℃H/Si(100)-(2 】1) system, and the implementation of 3D GLE method on the hydrogen on silicon surface has been presented. The formalism and algorithm of the 3D GLE are worked properly in the reactive scattering system. The calculated normal mode frequencies of surface vibrations were almost identical to previous harmonic slab calculations. The reaction probabilities were calculated for two energies. The calculations show that a very large amount of energy is transferred in surface in low energy scattering. Three different types of reaction mechanisms has been observed, which can not be shown in flat and rigid surface models. Further work on the reaction mechanisms and calculations of the vibrational and rotation distributions of products is in progress. The results will be reported elsewhere soon.
机译:我们提出了一种用于气体表面反应性散射的三维GLE方法,模型为H + H℃H/ Si(100)-(2】1),并且在硅表面氢上实施3D GLE方法具有被提出。 3D GLE的形式和算法可以在反应散射系统中正常工作。计算出的表面振动的正常模式频率几乎与以前的谐波平板计算相同。计算了两种能量的反应概率。计算表明,在低能散射下,大量能量在表面传输。已经观察到三种不同类型的反应机理,这在平坦和刚性的表面模型中无法显示。反应机理的进一步研究以及产物的振动和旋转分布的计算正在进行中。结果将很快在其他地方报告。

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