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首页> 外文期刊>Bulletin of the American Physical Society >APS -APS March Meeting 2017 - Event - Quantum selection rules for electron backscattering in wide quantum wells placed in tilted magnetic fields
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APS -APS March Meeting 2017 - Event - Quantum selection rules for electron backscattering in wide quantum wells placed in tilted magnetic fields

机译:APS -APS 2017年3月会议-活动-倾斜磁场中宽量子阱中电子反向散射的量子选择规则

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The effect of dc electric field on transport of highly mobile two-dimensional electrons is studied in wide GaAs single quantum wells placed in titled magnetic fields. The study shows resistance oscillates in perpendicular magnetic field due to electric-field induced Landau-Zener transitions between quantum levels that correspond to geometric resonances between cyclotron orbits and periodic modulation of electron density of states. Magnetic field tilt inverts these resistance oscillations. Surprisingly the strongest inverted oscillations are observed at a tilt corresponding to nearly absent modulation of the electron density of states in the regime of magnetic breakdown of semiclassical electron orbits. The effect reveals new quantum selection rules for elastic electron scattering in multi-subband electron systems leading to significant modification of the electron backscattering [1]. [1] William Mayer, Sergey Vitkalov and A. A. Bykov, Phys. Rev. B 93, 245436 (2016)
机译:在标题磁场中的宽GaAs单量子阱中研究了直流电场对高迁移率二维电子传输的影响。研究表明,由于电场引起的量子级之间的Landau-Zener跃迁,电阻在垂直磁场中振荡,这与回旋加速器轨道之间的几何共振和电子态密度的周期性调制相对应。磁场倾斜使这些电阻振荡反向。出乎意料的是,在半经典电子轨道的磁击穿状态下,对应于几乎没有状态电子密度调制的倾斜处观察到最强的反向振荡。该效应揭示了多子带电子系统中弹性电子散射的新量子选择规则,从而导致电子反向散射的显着改变[1]。 [1] William Mayer,Sergey Vitkalov和A. A. Bykov,物理学。版本B 93,245436(2016)

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