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首页> 外文期刊>Journal of Superconductivity and Novel Magnetism >The Effective Mass of Dirac Fermions and Spin-Dependent Thermodynamic Properties of Monolayer Ferromagnetic MoS2 in the Presence of Rashba Spin-Orbit Coupling
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The Effective Mass of Dirac Fermions and Spin-Dependent Thermodynamic Properties of Monolayer Ferromagnetic MoS2 in the Presence of Rashba Spin-Orbit Coupling

机译:在Rashba旋转轨道耦合存在下单层铁磁MOS2的DIRAC光环和旋转依赖热力学性能的有效质量

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摘要

The k.p Hamiltonian model at low-energy regime and Green's function technique are carried out to study the effect of Rashba spin-orbit coupling (RSOC) on the spin-dependent thermodynamic properties in monolayer molybdenum disulphide. In particular, we have studied electronic band structure (EBS), electronic heat capacity (EHC), and magnetic susceptibility (MS) of spin-up and spin-down subbands by variation of RSOC strength. An enhancement of the spin splitting can be achieved by increasing the Rashba coupling strength. Electronic subband structure shows that the effective mass of carriers decreases with Rashba coupling while the spin-up and spin-down subband gaps remain constant. The reduced effective mass leads to the increase of both EHC and MS as reasonable results. Spin splitting can be also obtained from the EHC and MS findings. At very strong Rashba couplings, two Dirac-like points appear for spin-up subbands which we can claim that the system gets a new quantum anomalous Hall phase.
机译:低能量制度和绿色功能技术的K.P Hamiltonian模型是为了研究Rashba旋转轨道耦合(RSOC)对单层钼二硫化物旋转依赖热力学性质的影响。特别地,我们通过RSOC强度的变化研究了通过RSOC强度的变化来研究旋转和旋转子带的电子带结构(EB),电子热容量(EHC)和磁化率(MS)。通过增加拉什巴耦合强度,可以实现自旋分裂的增强。电子子带结构表明,在旋转和旋转子带间隙保持恒定的同时,载流子的有效质量随着RASHBA耦合而减小。减少的有效质量导致EHC和MS的增加作为合理的结果。旋转分裂也可以从EHC和MS发现中获得。在非常强大的Rashba联轴器上,两个Dirac样点出现用于旋转子带,我们可以声称系统获得新的量子异常霍尔阶段。

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