论文标题
拓扑对Weyl Semimetal WP $ _2 $中准粒子相互作用的影响
Effect of topology on quasi-particle interactions in the Weyl semimetal WP$_2$
论文作者
论文摘要
我们比较了低维wp $ _2 $的两个晶体学阶段,以更好地了解拓扑系统中电子电子和电子波相互作用的特征。拓扑$β$ - 具有巨大磁力耐药性的Weyl半学,与拓扑上琐碎的$α$相比,电子拉曼散射的强度更高。 $ t <t^* = 20 $ k的这种强度急剧下降,这在拓扑阶段从边缘准粒子到连贯的低温状态。相比之下,非访问$α$期的电子相互作用显示出更为明显的特征。这里通常存在扩大的声子线宽,并且在中等温度方面与常规非谐度的偏差。这些效果为电子相关性和电子音波耦合的有趣相互作用提供了证据。这些效应涉及带和内电贴的电子波动。他们对对称性以及动量保护的依赖是了解这种相互作用的关键要素。
We compare two crystallographic phases of the low-dimensional WP$_2$ to better understand features of electron-electron and electron-phonon interactions in topological systems. The topological $β$-phase, a Weyl semimetal with a giant magneto-resistance, shows a larger intensity of electronic Raman scattering compared to the topologically trivial $α$-phase. This intensity sharply drops for $T < T^* = 20$ K which evidences a crossover in the topological phase from marginal quasiparticles to a coherent low temperature regime. In contrast, the non-topological $α$-phase shows more pronounced signatures of electron-phonon interaction. Here there exist generally enlarged phonon linewidths and deviations from conventional anharmonicity in an intermediate temperature regime. These effects provide evidence for an interesting interplay of electronic correlations and electron-phonon coupling. Both interband and intraband electronic fluctuations are involved in these effects. Their dependence on symmetry as well as momentum conservation are critical ingredients to understand this interplay.