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首页> 外文期刊>Physical review >Fractional fermion charges induced by axial-vector and vector gauge potentials and parity anomaly in planar graphenelike structures
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Fractional fermion charges induced by axial-vector and vector gauge potentials and parity anomaly in planar graphenelike structures

机译:平面石墨烯状结构中的轴向矢量和矢量规范势以及奇偶异常引起的小费米子电荷

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摘要

We show that fermion charge fractionalization can take place in a recently proposed chiral gauge model for graphene even in the absence of Kekule distortion in the graphene honeycomb lattice. In this model, electrons couple in a chiral way to a pseudomagnetic field with a vortex profile in such a way that it can be used to describe the influences of topological defects, such as disclinations, on the electronic states. We also extend the model by adding the coupling of fermions to an external magnetic field and show that the fermion charge can be fractionalized by means of only gauge potentials. It is shown that the chiral fermion charge can also have fractional value. We also relate the fractionalization of the fermion charge to the parity anomaly in an extended quantum electrodynamics, which involves vector and axial-vector gauge fields.
机译:我们显示,即使在石墨烯蜂窝状晶格中不存在Kekule畸变的情况下,费米子电荷分级也可以在最近提出的石墨烯手性规模型中发生。在此模型中,电子以手征方式耦合到具有涡旋轮廓的伪磁场,从而可以用来描述拓扑缺陷(例如旋错)对电子态的影响。我们还通过添加费米子与外部磁场的耦合来扩展模型,并表明费米子电荷可以仅通过标称电势进行分馏。结果表明,手性费米子电荷也可以具有分数。在扩展的量子电动力学中,我们还将费米子电荷的分馏与奇偶异常相关,这涉及矢量和轴向矢量规范场。

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