论文标题
薄膜Weyl半金属中的偶极光学等离子体
Dipolar optical plasmon in thin-film Weyl semimetals
论文作者
论文摘要
在具有较大的表面与柱状比的平板几何形状中,拓扑表面状态(例如用于Weyl或Dirac半学分的费米弧)可能会主导其低能特性。我们研究了此类系统中的集体电荷振荡,发现Weyl和常规电子系统之间存在明显的差异。我们的结果在分析和数值上获得的结果预测,Weyl半角薄膜托管一个单个$ω\ propto \ sqrt {q} $ plasmon模式,这是由于两个表面的集体,反对称的电荷振荡所致反对称声模式以及对称光学模式。这些模式位于颗粒连续体的间隙,因此在光谱上可观察到,并且可能在等离子应用中有用。
In a slab geometry with large surface-to-bulk ratio, topological surface states such as Fermi arcs for Weyl or Dirac semimetals may dominate their low-energy properties. We investigate the collective charge oscillations in such systems, finding striking differences between Weyl and conventional electronic systems. Our results, obtained analytically and verified numerically, predict that the Weyl semimetal thin-film host a single $ω\propto \sqrt{q}$ plasmon mode, that results from collective, anti-symmetric charge oscillations of between the two surfaces, in stark contrast to conventional 2D bi-layers as well as Dirac semimetals with Fermi arcs, which support anti-symmetric acoustic modes along with a symmetric optical mode. These modes lie in the gap of the particle-hole continuum and are thus spectroscopically observable and potentially useful in plasmonic applications.