论文标题

斯托克斯在粘性二维电子液体中围绕障碍物流动

Stokes flow around an obstacle in viscous two-dimensional electron liquid

论文作者

Gusev, G. M., Jaroshevich, A. S., Levin, A. D., Kvon, Z. D., Bakarov, A. K.

论文摘要

Poiseuille流的电子类似物是在狭窄的通道中的传输,其边缘无序的边缘以弥散的方式散射电子。在流体动力学状态下,电阻率随温度而降低,称为Gurzhi效应,与常规欧姆行为不同。我们通过实验研究了围绕浸入二维粘性液体的圆盘的stokes流动的电子类似物。圆障碍会导致电阻率的添加贡献。如果适用镜面条件,则不再可以检测Poiseuille型流动和Gurzhi效应。但是,在流过具有圆形障碍物的通道时,电阻率随温度而降低。通过调整温度,我们观察到圆盘尺寸长度上的弹道和流体动力学状态的传输特征。我们的实验结果证实了理论预测。

The electronic analog of the Poiseuille flow is the transport in a narrow channel with disordered edges that scatter electrons in a diffuse way. In the hydrodynamic regime, the resistivity decreases with temperature, referred to as the Gurzhi effect, distinct from conventional Ohmic behaviour. We studied experimentally an electronic analog of the Stokes flow around a disc immersed in a two-dimensional viscous liquid. The circle obstacle results in an additive contribution to resistivity. If specular boundary conditions apply, it is no longer possible to detect Poiseuille type flow and the Gurzhi effect. However, in flow through a channel with a circular obstacle, the resistivity decreases with temperature. By tuning the temperature, we observed the transport signatures of the ballistic and hydrodynamic regimes on the length scale of disc size. Our experimental results confirm theoretical predictions.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源