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Metastable Resistance-Anisotropy Orientation of Two-Dimensional Electrons in High Landau Levels

机译:高Landau能级中二维电子的亚稳态电阻各向异性取向

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In half-filled high Landau levels, two-dimensional electron systems possess collective phases which exhibit a strongly anisotropic resistivity tensor. A weak, but as yet unknown, rotational symmetry-breaking potential native to the host semiconductor structure is necessary to orient these phases in macroscopic samples. Making use of the known external symmetry-breaking effect of an in-plane magnetic field, we find that the native potential can have two orthogonal local minima. It is possible to initialize the system in the higher minimum and then observe its relaxation toward equilibrium.
机译:在半填充的高朗道能级中,二维电子系统具有集体相,这些相表现出很强的各向异性电阻率张量。主体半导体结构固有的微弱但未知的旋转对称破坏电势对于使宏观样品中的这些相取向是必需的。利用已知的平面内磁场的外部对称破坏效应,我们发现本征势可以具有两个正交的局部最小值。可以将系统初始化为更高的最小值,然后观察其向平衡状态的松弛。

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