论文标题
WTE2中的成像声子介导的流体动力流
Imaging phonon-mediated hydrodynamic flow in WTe2
论文作者
论文摘要
在存在相互作用的情况下,凝结物系统中的电子可以表现为流体动力,表现出与经典流体相关的现象,例如涡流和Poiseuille流动。在大多数导体中,通过筛选效果将电子电子相互作用最小化,从而阻碍了寻找流体动力材料的搜索。但是,最近,据报道,一类半法具有突出的相互作用。在这里,我们通过使用钻石中的氮呈缺损对局部磁场进行成像,研究了分层半分钨二硫脲中的电流流量。我们在三维钨硫硫醇中成像空间电流轮廓,发现它表现出不均匀的电流密度,表明流体动力学流动。我们的温度溶解电流轮廓测量显示了非单调的温度依赖性,在约20 k时的流体动力效应最强。我们还报告了从头算计算,表明单独的库仑相互作用并未解释电子电子相互作用,但主要是由声子介导的。这为寻找高载体密度材料中的流体动力流和显着的电子相互作用提供了有希望的途径。
In the presence of interactions, electrons in condensed-matter systems can behave hydrodynamically, exhibiting phenomena associated with classical fluids, such as vortices and Poiseuille flow. In most conductors, electron-electron interactions are minimized by screening effects, hindering the search for hydrodynamic materials; however, recently, a class of semimetals has been reported to exhibit prominent interactions. Here we study the current flow in the layered semimetal tungsten ditelluride by imaging the local magnetic field using a nitrogen-vacancy defect in a diamond. We image the spatial current profile within three-dimensional tungsten ditelluride and find that it exhibits non-uniform current density, indicating hydrodynamic flow. Our temperature-resolve current profile measurements reveal a non-monotonic temperature dependence, with the strongest hydrodynamic effects at approximately 20 K. We also report ab initio calculations showing that electron-electron interactions are not explained by the Coulomb interaction alone, but are predominantly mediated by phonons. This provides a promising avenue in the search for hydrodynamic flow and prominent electron interactions in high-carrier-density materials.