首页> 外文期刊>Journal of magnetism and magnetic materials >Spin- and valley-dependent electronic band structure and electronic heat capacity of ferromagnetic silicene in the presence of strain, exchange field and Rashba spin-orbit coupling
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Spin- and valley-dependent electronic band structure and electronic heat capacity of ferromagnetic silicene in the presence of strain, exchange field and Rashba spin-orbit coupling

机译:应变,交换场和Rashba自旋轨道耦合存在下铁磁硅的自旋和谷依赖电子能带结构和电子热容量

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摘要

We studied how the strain, induced exchange field and extrinsic Rashba spin-orbit coupling (RSOC) enhance the electronic band structure (EBS) and electronic heat capacity (EHC) of ferromagnetic silicene in presence of external electric field (EF) by using the Kane-Mele Hamiltonian, Dirac cone approximation and the Green's function approach. Particular attention is paid to investigate the EHC of spin-up and spin-down bands at Dirac K and K′ points. We have varied the EF, strain, exchange field and RSOC to tune the energy of inter-band transitions and consequently EHC, leading to very promising features for future applications. Evaluation of EF exhibits three phases: Topological insulator (TI), valley-spin polarized metal (VSPM) and band insulator (BI) at given aforementioned parameters. As a new rinding, we have found a quantum anomalous Hall phase in BI regime at strong RSOCs. Interestingly, the effective mass of carriers changes with strain, resulting in EHC behaviors. Here, exchange field has the same behavior with EF. Finally, we have confirmed the reported and expected symmetry results for both Dirac points and spins with the study of valley-dependent EHC.
机译:我们通过使用Kane研究了应变,感应交换场和外在Rashba自旋轨道耦合(RSOC)如何在存在外部电场(EF)的情况下增强铁磁硅的电子能带结构(EBS)和电子热容(EHC) -梅勒·哈密顿量,狄拉克锥近似和格林函数法。特别要注意研究Dirac K和K'点上的旋转带和旋转带的EHC。我们已经改变了EF,应变,交换场和RSOC,以调整带间跃迁的能量,进而调整EHC,从而为未来的应用带来了非常有希望的功能。在给定的上述参数下,EF的评估表现出三个阶段:拓扑绝缘体(TI),谷形自旋极化金属(VSPM)和带状绝缘体(BI)。作为一种新的方法,我们在强RSOC的BI机制中发现了一个量子异常霍尔相。有趣的是,载体的有效质量随应变而变化,从而导致EHC行为。在这里,交换字段与EF具有相同的行为。最后,我们已经通过对山谷依赖性EHC的研究证实了Dirac点和自旋的报道和预期的对称结果。

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