论文标题

在类似石墨烯的系统中旋转到伪旋转的转换:包括顶点校正在内的久保形式主义

Spin to pseudo-spin conversion in graphene-like systems: A Kubo formalism including vertex corrections

论文作者

Baghran, R., Tehranchi, M. M., Phirouznia, A.

论文摘要

旋转到伪旋转转化率,通过该转化,尤其是针对硅胶的石墨烯和绝缘体阶段,已经研究了dirac系统中自旋种群不平衡转换为非平衡伪旋转密度。通过在Kubo方法中进行了计算,并考虑到顶点校正。结果表明,自旋转换为石墨烯或硅中的伪自旋,这些旋转来自自旋轨道相互作用。自旋对伪自旋转化的响应函数通过顶点校正石墨烯中的杂质而削弱了几个数量级,但是,在绝缘子硅烯中增强了这种转化。此外,在硅氧烯的情况下,结果表明,由于频率学的变化,可以通过操纵外部电场观察到上述响应函数的明显变化,这可以通过垂直应用于系统表面。在观察到硅纳米丝带拓扑相变的关键电场上,响应函数突然变化。量子数之间的相互转换可以为信息和数据处理技术提供字段。

Spin to pseudo-spin conversion by which spin population imbalance converts to non-equilibrium pseudo-spin density in Dirac systems has been investigated particularly for graphene and insulator phase of silicene. Calculations have been performed within the Kubo approach and by taking into account the vertex correction. Results indicate that spin converts to pseudo-spin in either graphene or silicene that identified to come from the spin-orbit interactions. The response function of spin to pseudo-spin conversion is weakened several orders of magnitude by vertex correction of impurities in graphene, however, this conversion is strengthened in insulator silicene. In addition, in the case of silicene, results are indicative of an obvious change in the mentioned response function as a result of the change in band-topology which can be observed by manipulation of external electric field, vertically applied to the system surface. At the critical electric field in which the topological phase transition for silicene nano-ribbon has been observed, response function changes abruptly. Interconversion between the quantum numbers could provide a field for information and data processing technologies.

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