Site-Dependent Vibrationally Assisted Sticking Effect on H2–Si(001)$2\times 2$ Surface Interactions
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概要
- 論文の詳細を見る
We performed quantum dynamics calculations using available potential energy surfaces for the dissociative adsorption of H2 incident on a Si(001)$2\times 2$ surface. In this study, we show that the probability of adsorption for H2 and the effect of vibrationally assisted sticking (VAS) vary at different sites along the Si-dimer bond. Based on the sticking probability plots for H2 as functions of its initial translational energy, we show that the H2-silicon surface interactions are all activated, with the lowest potential barrier being found in the case of H2 coming down the Si surface with its center of mass roughly above the down Si-dimer atom. On the other hand, the VAS effect is strongest when H2, while coming down the silicon surface along the surface normal, approaches the point farthest from the up Si-dimer atom along the Si-dimer bond. Here, the potential barrier is closest to the curved region along the reaction path in the corresponding potential energy surface for this system.
- Published by the Japan Society of Applied Physics through the Institute of Pure and Applied Physicsの論文
- 2005-02-15
著者
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Dino Wilson
Department Of Physics Osaka University
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NAKANISHI Hiroshi
Department of Precision Science and Technology and Applied Physics, Osaka University
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KASAI Hideaki
Department of Precision Science and Technology and Applied Physics, Osaka University
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Dino W
Department Of Physics Osaka University
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Dino Wilson
Department Of Applied Physics Osaka University
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Arboleda Nelson
Graduate School Of Engineering Osaka University
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Arboleda Nelson
Department of Applied Physics, Osaka University
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Arboleda Nelson
Department Of Applied Physics Osaka University
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Kasai Hideaki
Department Of Applied Physics Osaka University
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Arboleda Jr.
Department Of Applied Physics Osaka University
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Kasai Hideaki
Department Of Applied Physics Faculty Of Engineering Osaka University
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Nakanishi Hiroshi
Department of Applied Physics, Graduate School of Engineering, Osaka University, Suita, Osaka 565-0871, Japan
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