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Landau Level Physics in a Quantum Well: new singular features in magnetization and violations of de Haas - van Alphen periodicities

机译:Landau水平物理井:磁化和违规的新奇异特征 - 范字母周期

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Analytical calculations based on a Landau Level (LL) picture are reported for an interface (with a finite-width Quantum Well (QW)) and for a fully three-dimensional charged quantum electronic system in an external magnetic field. They lead to a sequence of previously unnoticed singular features in global magnetization and magnetic susceptibility that lead to nontrivial corrections to the standard de Haas - van Alphen periods. Additional features due to Zeeman splitting are also reported (such as new energy minima that originate from the interplay of QW, Zeeman and LL Physics) that are possibly useful for the design of quantum devices. A corresponding calculation in a Composite Fermion picture leads to new predictions on magnetic response properties of a fully-interacting electron liquid in a finite-width interface.
机译:报告了基于Landau级别(LL)图片的分析计算(具有有限宽度量子阱(QW))和外部磁场中的全三维带电量子电子系统。它们导致全球磁化和磁化率中先前未被注意的奇异特征的序列,这导致对标准DE HAAS - VAN ALPHEN时段的非侵略性校正。还报告了由于塞曼分裂引起的附加功能(例如源自QW,Zeeman和LL物理学的相互作用的新能量最小值),这可能对量子装置的设计有用。复合FERMION图像中的相应计算导致有限宽度界面中完全相互作用的电子液体的磁响应特性的新预测。

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