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分子共振存在下振动量子的光谱线形状

Spectroscopic Line Shapes of Vibrational Quanta in the Presence of Molecular Resonances.

作者信息

Meierott Stefan, Néel Nicolas, Kröger Jörg

机构信息

Institut für Physik, Technische Universität Ilmenau , D-98693 Ilmenau, Germany.

出版信息

J Phys Chem Lett. 2016 Jul 7;7(13):2388-93. doi: 10.1021/acs.jpclett.6b00923. Epub 2016 Jun 14.

Abstract

Line shapes of molecular vibrational quanta in inelastic electron tunneling spectroscopy may indicate the strength of electron-vibration coupling, the hybridization of the molecule with its environment, and the degree of vibrational damping by electron-hole pair excitation. Bare as well as C60-terminated Pb tips of a scanning tunneling microscope and clean as well as C60-covered Pb(111) surfaces were used in low-temperature experiments. Depending on the overlap of orbital and vibrational spectral ranges different spectroscopic line shapes of molecular vibrational quanta were observed. The energy range covered by the molecular resonance was altered by modifying the adsorption configuration of the molecule terminating the tip apex. Concomitantly, the line shapes of different vibrational modes were affected. The reported observations represent an experimental proof to theoretical predictions on the contribution from resonant processes to inelastic electron tunneling.

摘要

非弹性电子隧穿光谱中分子振动量子的线形可表明电子 - 振动耦合的强度、分子与其环境的杂化以及通过电子 - 空穴对激发产生的振动阻尼程度。低温实验中使用了扫描隧道显微镜的裸铅尖端以及C60端接的铅尖端,还有清洁的以及C60覆盖的Pb(111)表面。根据轨道和振动光谱范围的重叠情况,观察到了分子振动量子的不同光谱线形。通过改变终止尖端顶点的分子的吸附构型,改变了分子共振所覆盖的能量范围。同时,不同振动模式的线形也受到了影响。所报道的观察结果为关于共振过程对非弹性电子隧穿贡献的理论预测提供了实验证明。

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