论文标题

在二维非词性淋巴线半学中的等离子体

Plasmons in a two-dimensional nonsymmorphic nodal-line semimetal

论文作者

Cao, Jin, Chang, Hao-Ran, Feng, Xiaolong, Yao, Yugui, Yang, Shengyuan A.

论文摘要

最近的实验已经建立了一种非对称性对称性的淋巴结保护线,在二维(2D)组成可调材料NBSI $ _x $ _x $ te $ _2 $中。在这里,我们从理论上研究了这种非词性结节线半含量的等离子性能。我们表明,非词法特征使等离子具有极强的各向异性。同时存在内标本和边缘等离子体分支。内标分支是无间隙的,并且具有$ q^{1/2} $分散。它是最分散的,并且独立于载体密度在正常与节点线的方向上,而沿节点线,其分散体在很大程度上被抑制,并且其频率与载体密度线性缩放。带间隔分支,其长波长极限与范夫结构的van Hove奇异性相连。我们发现,在这种系统中,单个粒子激发被强烈抑制,从而减少了等离子的降水阻尼。这些字符通过2D NBSI $ _X $ TE $ _2 $的第一原理计算进一步验证。还讨论了带电杂质的静态筛查中的有趣特征。我们的结果揭示了一类非畸形拓扑半学的特征等离子体,并为其实验检测和可能的应用提供了指导。

Recent experiments have established a type of nonsymmorphic symmetry protected nodal lines in the family of two-dimensional (2D) composition tunable materials NbSi$_x$Te$_2$. Here, we theoretically study the plasmonic properties of such nonsymmorphic nodal-line semimetals. We show that the nonsymmorphic character endows the plasmons with extremely strong anisotropy. There exist both intraband and interband plasmon branches. The intraband branch is gapless and has a $q^{1/2}$ dispersion. It is most dispersive and is independent of carrier density in direction normal to the nodal line, whereas along the nodal line, its dispersion is largely suppressed and its frequency scales linearly with carrier density. The interband branches are gapped and their long wavelength limits are connected with van Hove singularities of the band structure. We find that the single particle excitations are strongly suppressed in such systems, which decreases the Landau damping of plasmons. These characters are further verified by first-principles calculations on 2D NbSi$_x$Te$_2$. Interesting features in static screening of charged impurity are also discussed. Our result reveals characteristic plasmons in a class of nonsymmorphic topological semimetals and offers guidance for its experimental detection and possible applications.

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