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首页> 外文期刊>Chemphyschem: A European journal of chemical physics and physical chemistry >Nonadiabatic Dynamics of Hydrogen Diffusion on Cu(001): Classical Mapping Model with Multistate Projection Window in Real Space
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Nonadiabatic Dynamics of Hydrogen Diffusion on Cu(001): Classical Mapping Model with Multistate Projection Window in Real Space

机译:Cu(001)上氢气扩散的非驱散动力学:典型映射模型与实际空间中的多岩投影窗口

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摘要

Diffusion of atomic hydrogen on metallic surfaces is a longstanding research topic of both fundamental and practical interests. However, full understanding of the microscopic mechanisms and development of effective strategy for surface dynamics control at the molecular level remain elusive. In this paper, we propose a new nonadiabatic multistate model for surface diffusion based on a real space decomposition scheme by generalizing the classical mapping theory of Meyer and Miller. The model suggests a general multistate perspective on real-time surface dynamics by mapping it into spatially disjointed windowing functions, which feature the explicit nonadiabatic controllability. Within this framework, the first nonadiabatic molecular dynamics simulation is performed for atomic hydrogen diffusion on the Cu(001) surface, and the nonequilibrium effect of lattice distortion is studied.
机译:原子氢在金属表面上的扩散是一种重要的研究课题,对基础和实际的兴趣。 然而,全面了解分子水平在分子水平下对表面动力学控制的有效策略的显微机制和发展仍然难以捉摸。 在本文中,通过概括Meyer和Miller的经典映射理论,提出了一种基于真实空间分解方案的表面扩散的新的非抗体多态模型。 该模型通过将其映射到空间脱节的窗口函数中的实时曲面动态上,这模特提出了一般的多态透视图,该窗口函数具有明确的非等压可控性。 在该框架内,对Cu(001)表面上的原子氢扩散进行第一个非抗拒分子动力学模拟,研究了晶格变形的非预测效果。

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