Fontenele Rodrigo A, Dos Anjos Sousa Júnior Sebastião, Cysne Tarik P, Costa Natanael C
Instituto de Física, Universidade Federal do Rio de Janeiro Cx.P. 68.528, 21941-972 Rio de Janeiro, RJ, Brazil.
Instituto de Física, Universidade Federal Fluminense, 24210-346 Niterói, RJ, Brazil.
J Phys Condens Matter. 2024 Mar 5;36(22). doi: 10.1088/1361-648X/ad2cc9.
We study the impact of the Rashba spin-orbit coupling (RSOC) on the stability of charge-density wave (CDW) in systems with large electron-phonon coupling (EPC). Here, the EPC is considered in the framework of the Holstein model at the half-filled square lattice. We obtain the phase diagram of the Rashba-Holstein model using the Hartree-Fock mean-field theory, and identify the boundaries of the CDW and Rashba metal phases. We notice that the RSOC disfavors the CDW phase, driving the system to a correlated Rashba metal. Also, we employ a cluster perturbation theory (CPT) approach to investigate the phase diagram beyond the Hartree-Fock approximation. The quantum correlations captured by CPT indicate that the RSOC is even more detrimental to CDW than previously anticipated. That is, the Rashba metal region is observed to be expanded in comparison to the mean-field case. Additionally, we investigate pairing correlations, and the results further strengthen the identification of critical points.
我们研究了Rashba自旋轨道耦合(RSOC)对具有大电子-声子耦合(EPC)的系统中电荷密度波(CDW)稳定性的影响。在此,EPC是在半填充方形晶格的Holstein模型框架内考虑的。我们使用Hartree-Fock平均场理论获得了Rashba-Holstein模型的相图,并确定了CDW和Rashba金属相的边界。我们注意到,RSOC不利于CDW相,驱使系统进入相关的Rashba金属相。此外,我们采用团簇微扰理论(CPT)方法来研究超出Hartree-Fock近似的相图。CPT捕获的量子关联表明,RSOC对CDW的不利影响比之前预期的更大。也就是说,与平均场情况相比,观察到Rashba金属区域有所扩大。此外,我们研究了配对关联,结果进一步强化了临界点的识别。