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Initiating and imaging the coherent surface dynamics of charge carriers in real space

机译:在真实空间中启动和成像电荷载流子的相干表面动力学

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摘要

The tip of a scanning tunnelling microscope is an atomic-scale source of electrons and holes. As the injected charge spreads out, it can induce adsorbed molecules to react. By comparing large-scale ‘before' and ‘after' images of an adsorbate covered surface, the spatial extent of the nonlocal manipulation is revealed. Here, we measure the nonlocal manipulation of toluene molecules on the Si(111)-7 × 7 surface at room temperature. Both the range and probability of nonlocal manipulation have a voltage dependence. A region within 5–15 nm of the injection site shows a marked reduction in manipulation. We propose that this region marks the extent of the initial coherent (that is, ballistic) time-dependent evolution of the injected charge carrier. Using scanning tunnelling spectroscopy, we develop a model of this time-dependent expansion of the initially localized hole wavepacket within a particular surface state and deduce a quantum coherence (ballistic) lifetime of ∼10 fs.
机译:扫描隧道显微镜的尖端是原子级的电子和空穴源。随着注入的电荷扩散,它可以诱导吸附的分子发生反应。通过比较被吸附物覆盖表面的大规模“之前”和“之后”图像,可以揭示非局部操作的空间范围。在这里,我们测量室温下Si(111)-7×7表面上甲苯分子的非局部操纵。非局部操纵的范围和可能性都与电压有关。注射部位5–15 nm范围内的区域显示出明显的操纵减少。我们提出,该区域标记了注入电荷载流子的初始相干(即弹道)时间依赖性演化的程度。使用扫描隧道光谱法,我们开发了一个在特定表面状态下初始局限的空穴波包的这种时间相关扩展的模型,并推论出约10 fs的量子相干(弹道)寿命。

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