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Theoretical model for negative giant magnetoresistance in ultrahigh-mobility 2D electron systems

机译:超高迁移率二维电子系统中负巨磁阻的理论模型

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摘要

We report on theoretical studies of the recently discovered negative giant magnetoresistance in ultraclean two-dimensional electron systems at low temperatures. We adapt a transport model to a ultraclean scenario and calculate the elastic scattering rate (electron-charged impurity) in a regime where the Landau level width is much smaller than the cyclotron energy. We obtain that for low magnetic fields the scattering rate and, as a consequence, the longitudinal magnetoresistance dramatically drop because of the small density of states between Landau levels. We also study the dependence of this striking effect on temperature and an in-plane magnetic field.
机译:我们报道了在低温下超净二维电子系统中最近发现的负巨磁电阻的理论研究。我们使运输模型适应超净情况,并在朗道能级宽度远小于回旋加速器能量的情况下计算弹性散射率(带电杂质)。我们得到的结果是,对于低磁场,由于Landau能级之间的态密度很小,因此散射率以及纵向磁阻急剧下降。我们还研究了这种打击效果对温度和面内磁场的依赖性。

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