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Cu(001) to HD energy transfer and translational to rotational energy conversion onsurface scattering

机译:Cu(001)到HD的能量转移以及表面散射时的平移到旋转能量转换

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Intense peaks are observed in angular intensity distributions for HD scattering from the Cu(001) surface. These can be ascribed to soherent diffraction with translational energy transfers of #DELTA#E=0, -11.0, or 33.11 meV to molecular rotational energy. Time-of-light spectra, at other scattering angles, display inelastic peaks that are assigned to phononcreation or anihilation processes with either the HD rotationally elastic or inelastic transitions. The HD phonon dispersion curves suggest a strong HD coupling both with surface Rayleigh modes and with bulk phonon modes of the metal surface. Comparisons of both elastic and inelastic scattering intensities are also made with those reported for the Ni(001) surface. To explain an apparent anomalous diffraction peak intensity ratio for Ni, a preferential coupling for the HD J=0 rotational state into a predissociation channel above the Ni surface is proposed.
机译:在从Cu(001)表面进行HD散射的角度强度分布中观察到了强烈的峰值。这些可以归因于相干衍射,其中#DELTA#E = 0,-11.0或33.11 meV的平移能量转移到分子旋转能。在其他散射角度下的光谱时间显示了非弹性峰,这些峰分配给具有HD旋转弹性或非弹性跃迁的声子形成或or灭过程。 HD声子色散曲线表明与表面瑞利模和金属表面的体声子模都有很强的HD耦合。还对弹性和非弹性散射强度与Ni(001)表面的强度进行了比较。为了解释Ni的明显的异常衍射峰强度比,提出了将HD J = 0旋转状态优先耦合到Ni表面上方的预离解通道的建议。

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