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首页> 外文期刊>The Journal of Chemical Physics >HELIUM ATOM SCATTERING FROM ISOLATED CO MOLECULES ON COPPER(001)
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HELIUM ATOM SCATTERING FROM ISOLATED CO MOLECULES ON COPPER(001)

机译:铜上分离的CO分子的氦原子散射(001)

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Angular distributions have been measured for helium atoms scattering from isolated CO molecules chemisorbed on a Cu(001) surface as a function of incident beam energy between 9.4 and 100 meV and surface coverage from 1.3% ML to 9.3% ML. Up to five oscillations an clearly observed in the angular distributions. The parallel wave vector transfers of the peaks vary only slightly with incident energy and are independent of coverage up to 20% of a c(2 x 2) layer. New hard wall scattering calculations show that all of the distinct peaks observed can be explained by interference structures involving both Fraunhofer diffraction and illuminated face scattering from CO molecules with an approximate hard wall radius of 2.4 Angstrom with no evidence of the classical rainbows predicted in several recent theoretical studies. (C) 1996 American Institute of Physics. [References: 22]
机译:已经测量了从原子化学吸附在Cu(001)表面的孤立的CO分子散射的氦原子的角分布,该角度是入射束能量在9.4和100 meV之间以及表面覆盖率从1.3%ML到9.3%ML的函数。在角度分布中最多可以观察到五个振荡。峰的平行波矢量转移随入射能量的变化很小,并且与c(2 x 2)层的20%的覆盖率无关。新的硬壁散射计算表明,观察到的所有明显峰都可以通过干涉结构来解释,该结构涉及Fraunhofer衍射和来自CO分子的照明面散射,硬壁半径约为2.4埃,没有证据表明最近有几个经典的彩虹理论研究。 (C)1996年美国物理研究所。 [参考:22]

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