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Fate of the extended states in a vanishing magnetic field: The role of spins in strongly interacting two-dimensional electron systems - art. no. 041303

机译:消失的磁场中扩展状态的命运:自旋在强相互作用的二维电子系统中的作用-艺术。没有。 041303

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摘要

In noninteracting two-dimensional (2D) electron systems, the extended states "float up" in energy in the vanishing perpendicular magnetic field B-perpendicular to, giving rise to an insulator. However, in strongly interacting 2D systems, the extended states remain at a finite energy as B-perpendicular to-->0, thus allowing conduction. Here we show that polarizing the electrons' spins in strongly interacting systems causes the extended states to once more "float up" in energy, as they do for noninteracting electrons. The difference between extended states that float up (an insulator) or remain at a constant energy (a metal) is thus unambiguously tied to the existence of the spins. [References: 19]
机译:在非相互作用的二维(2D)电子系统中,扩展状态在垂直于垂直于B的消失的垂直磁场中的能量“上浮”,从而产生绝缘体。但是,在强相互作用的2D系统中,扩展状态保持为有限的能量,因为B垂直于-> 0,因此允许导电。在这里,我们表明在强相互作用的系统中使电子的自旋极化会导致扩展状态的能量再次“浮起”,就像对非相互作用电子一样。因此,漂浮(绝缘体)或保持恒定能量(金属)的延伸状态之间的差异明确地与自旋的存在相关。 [参考:19]

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