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Electron accumulation layer in ultrastrong magnetic field

机译:在超强电子累积层磁场

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摘要

When a three-dimensional electron gas is subjected to a very strong magnetic field, it can reach a quasi-onedimensional state in which all electrons occupy the lowest Landau level. This state is referred to as the extreme quantum limit (EQL) and has been studied in the physics of pulsars and bulk semiconductors. Here we present a theory of the EQL phase in electron accumulation layers created by an external electric field E at the surface of a semiconductor with a large Bohr radius such as InSb; PbTe; SrTiO3 (STO); and particularly in the LaAlO3/SrTiO3 (LAO/STO) heterostructure. The phase diagram of the electron gas in the plane of the magnetic field strength and the electron surface concentration is found for different orientations of the magnetic field. We find that in addition to the quasi-classical metallic phase (M), there is a metallic EQL phase, as well as an insulating Wigner crystal state (WC). Within the EQL phase, the Thomas-Fermi approximation is used to find the electron density and the electrostatic potential profiles of the accumulation layer. Additionally, the quantum capacitance for each phase is calculated as a tool for experimental study of these phase diagrams. Published by AIP Publishing.
机译:当一个三维电子气受一个非常强大的磁场,它可以达成所有的电子quasi-onedimensional状态朗道水平最低。称为极端量子限制(EQL)并研究了脉冲星的物理学和大部分半导体。电子EQL阶段的积累层由外部的电场E半导体表面与波尔InSb等半径;特别是在LaAlO3 / SrTiO3(老挝/ STO)异质结构。电子气平面的磁场强度和表面的电子浓度发现不同方向的吗磁场。quasi-classical金属相(M),有一个金属EQL阶段,以及一个绝缘维格纳晶体状态(WC)。托马斯费密近似用于查找的电子密度和静电潜在的资料积累层。此外,量子电容阶段是计算作为实验工具这些相图的研究。出版。

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