物理
凝聚态物理
电子
钻石
电流(流体)
Hagen-Poiseuille方程
空位缺陷
流量(数学)
石墨烯
磁场
声子
库仑
量子力学
机械
材料科学
热力学
复合材料
作者
Uri Vool,Assaf Hamo,Georgios Varnavides,Yaxian Wang,Tony Zhou,Nitesh Kumar,Yuliya Dovzhenko,Ziwei Qiu,Christina A. C. Garcia,Andrew T. Pierce,Johannes Gooth,Polina Anikeeva,Claudia Felser,Prineha Narang,Amir Yacoby
出处
期刊:Nature Physics
[Nature Portfolio]
日期:2021-09-16
卷期号:17 (11): 1216-1220
被引量:130
标识
DOI:10.1038/s41567-021-01341-w
摘要
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.
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