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Two-dimensional crossover and strong coupling of plasmon excitations in arrays of one-dimensional atomic wires

机译:一维原子线阵列中的等离子体激元的二维交叉和强耦合

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摘要

Dimensional crossover is of high relevance to understanding real-world quasi-one-dimensional (1D) systems. Here we study the collective excitations, measured as plasmon dispersions in an electron energy loss experiment, in a tunable family of model systems, namely, Au chains on stepped Si(hhk) substrates, that allow variations of chain widths and interchain spacings. We indeed observe 1D-like dispersions, but with a significant influence of higher dimensions. Surprisingly, we find that it is not the interchain coupling but the width of the conduction channel, as confirmed by tunneling spectroscopy, that dominates the excitations. © 2016 American Physical Society.
机译:维度交叉与理解现实世界的准一维(1D)系统高度相关。在这里,我们研究了可调谐的模型系统族(即阶梯式Si(hhk)衬底上的Au链)的集体激发,该激发以电子能量损失实验中的等离激元弥散测量,该链允许链宽和链间间距的变化。我们确实观察到了类似1D的色散,但是具有较大尺寸的显着影响。出乎意料的是,我们发现,激发的主要因素不是链间耦合,而是传导通道的宽度(通过隧道光谱法证实)。 ©2016美国物理学会。

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