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Coverage dependent desorption dynamics of deuterium on Si(100) surfaces: Interpretation with a diffusion-promoted desorption model

机译:Si(100)表面上氘的取决于覆盖率的解吸动力学:扩散促进解吸模型的解释

摘要

We studied coverage dependence of time-of-flight (TOF) spectra of D2 molecules thermally desorbed from the D/Si(100) surface. The mean translational energies Et of desorbed D2 molecules were found to increase from 0.20±0.05 eV to 0.40±0.04 eV as the desorption coverage window was decreased from 1.0 MLD0.9 ML to 0.2 MLD0 ML, being consistent with the kinetics switch predicted in the interdimer mechanism. The measured TOF spectra were deconvoluted into 2H, 3H, and 4H components by a curve fitting method along the principle of detailed balance. As a result, it turned out that the desorption kinetics changes from the 4H to the 3H situation at high coverage above D = 0.9 ML, while the 2H desorption is dominant for a quite wide coverage region up to D = 0.8 ML. A dynamic desorption mechanism by which the desorption is promoted by D-atom diffusion to dangling bonds was proposed.
机译:我们研究了从D / Si(100)表面热脱附的D2分子的飞行时间(TOF)光谱的覆盖率依赖性。发现解吸的D2分子的平均平移能Et从0.20±0.05 eV增加到0.40±0.04 eV,这是因为解吸覆盖范围从1.0 MLD0.9 ML降低到0.2 MLD0 ML,与动力学预测一致。二聚体机制。根据详细平衡原理,通过曲线拟合方法将测得的TOF光谱解卷积为2H,3H和4H分量。结果,结果表明,在D = 0.9 ML以上的高覆盖率下,解吸动力学从4H变为3H,而2H的解吸在D = 0.8 ML的较宽覆盖范围内占主导。提出了动态解吸机理,通过D-原子扩散促进解吸成悬空键。

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