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Electron-electron interactions in the 2D electron system

机译:二维电子系统中的电子-电子相互作用

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In this paper, we report studies of the electron-electron interaction effects in 2D electron systems. The interaction manifests in renormalization of the effective spin susceptibility, effective mass, g~*-factor, conductivity etc. By applying in-plane magnetic field, we tuned the effective interaction between the electrons and compared with theory the temperature dependence of the conductivity. We find a good agreement with interaction corrections calculated within the Fermi liquid theory. To address the question on the origin of the metal-insulator transition (MIT) in 2D, we explored transport and magnetotransport properties in the vicinity of the MIT and compared our data with solutions of two equations of the renormalization group (RG) theory, which describes temperature evolutions of the resistivity and interaction parameters for 2D electron system. We found a good agreement between the p(T, B_(||)) data and the RG-theory in a wide range of the in-plane fields. These results support the Fermi liquid type origin of the metallic state and the interpretation of the observed 2D MIT as the true quantum phase transition.
机译:在本文中,我们报告了二维电子系统中电子-电子相互作用效应的研究。相互作用表现为有效自旋磁化率,有效质量,g〜*因子,电导率等的重新归一化。通过施加面内磁场,我们调节了电子之间的有效相互作用,并与理论上的电导率的温度依赖性进行了比较。我们发现费米液体理论中计算出的相互作用校正具有良好的一致性。为了解决有关二维中金属-绝缘体转变(MIT)起源的问题,我们探索了MIT附近的输运和磁输运性质,并将我们的数据与重归一化组(RG)理论的两个方程的解进行了比较,描述了二维电子系统的电阻率和相互作用参数的温度演变。我们发现p(T,B_(||))数据与RG理论在大范围的面内场中都很好地吻合。这些结果支持费米液态类型的金属态起源,并将观察到的2D MIT解释为真正的量子相变。

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