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首页> 外文期刊>The European Physical Journal B >Bound-states and polarized charged zero modes in three-dimensional topological insulators induced by a magnetic vortex
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Bound-states and polarized charged zero modes in three-dimensional topological insulators induced by a magnetic vortex

机译:磁涡旋在三维拓扑绝缘子中的束缚态和极化带电零模

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摘要

By coating a three-dimensional topological insulator (TI) with a ferromagnetic film supporting an in-plane magnetic vortex, one breaks the time-reversal symmetry (TRS) without generating a mass gap. It rather yields electronic states bound to the vortex center which have different probabilities associated with each spin mode. In addition, its associate current (around the vortex center) is partially polarized with an energy gap separating the most excited bound state from the scattered ones. Charged zero-modes also appear as fully polarized modes localized near the vortex center. From the magnetic point of view, the observation of such a special current in a TI-magnet sandwich comes about as an alternative technique for detecting magnetic vortices in magnetic thin films.
机译:通过在三维拓扑绝缘体(TI)上覆盖一层支持面内磁涡旋的铁磁膜,可以打破时间反转对称性(TRS),而不会产生质量间隙。而是产生绑定到涡旋中心的电子状态,这些电子状态具有与每个自旋模式相关的不同概率。另外,其伴生电流(围绕涡旋中心)被能隙部分极化,该能隙将最激发的束缚态与散射态分开。带电的零模还表现为位于旋涡中心附近的全极化模。从磁性的角度来看,在TI磁体夹层中观察这种特殊电流是检测磁性薄膜中磁涡旋的另一种技术。

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