论文标题

超高迁移率二维电子气体中的非线性传输现象和电流诱导的流体动力学

Non-linear Transport Phenomena and Current-induced Hydrodynamics in Ultra-high Mobility Two-dimensional Electron Gas

论文作者

Wang, Zitong, Hilke, Michael, Fong, Norm, Austing, Guy, Studenikin, Sergei, West, Ken, Pfeiffer, Loren

论文摘要

我们报告了高填充因子处的非线性传输现象,以及直流迁移率(MU = 20x10^6 cm^2/vs)中的DC电流诱导的电子流体动力学,二维电子气体在狭窄(15微米宽)的GAAS/Algaas Hall bar中,用于DC电流密度为0.67 A/m/m。各种现象和现象之间的边界在二维微分电阻率图中被捕获,这是磁场(最高250吨)和直流电流的函数。该地图类似于相图,划定了由Shubnikov-de Haas(SDH)振荡(以及这些振荡的相位反转)围绕零DC电流围绕的不同区域;零场周围的负磁磁性和双峰特征(均具有弹道); Hall场引起的电阻振荡(Hiros)从原点辐射出来。从对零场附近数据的详细分析中,我们表明,增加直流电流抑制电子电子散射长度,从而驱动了对差分纵向和横向(HALL)电阻的增长的流体动力贡献。我们用直流电流诱导流体动力学的方法与改变温度的更常见方法不同。我们还发现从SDH振荡提取的量子寿命与从Hiros提取的量子寿命之间存在显着(两到四个因素)。除了观察Hiro峰达到第七阶的峰值外,我们还观察到高直流电流的一阶和二阶Hiro Maxima之间的意外类似Hiro的特征。

We report on non-linear transport phenomena at high filling factor and DC current-induced electronic hydrodynamics in an ultra-high mobility (mu=20x10^6 cm^2/Vs) two-dimensional electron gas in a narrow (15 micron wide) GaAs/AlGaAs Hall bar for DC current densities reaching 0.67 A/m. The various phenomena and the boundaries between the phenomena are captured together in a two-dimensional differential resistivity map as a function of magnetic field (up to 250 mT) and DC current. This map, which resembles a phase diagram, demarcate distinct regions dominated by Shubnikov-de Haas (SdH) oscillations (and phase inversion of these oscillations) around zero DC current; negative magnetoresistance and a double-peak feature (both ballistic in origin) around zero field; and Hall field-induced resistance oscillations (HIROs) radiating out from the origin. From a detailed analysis of the data near zero field, we show that increasing the DC current suppresses the electron-electron scattering length that drives a growing hydrodynamic contribution to both the differential longitudinal and transverse (Hall) resistivities. Our approach to induce hydrodynamics with DC current differs from the more usual approach of changing the temperature. We also find a significant (factor of two to four) difference between the quantum lifetime extracted from SdH oscillations, and the quantum lifetime extracted from HIROs. In addition to observing HIRO peaks up to the seventh order, we observe an unexpected HIRO-like feature close to mid-way between the first-order and the second-order HIRO maxima at high DC current.

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