论文标题
声子引起的相关电子哈密顿人的不稳定性
Phonon Induced Instabilities in Correlated Electron Hamiltonians
论文作者
论文摘要
对对电子之间的耦合以及局部声子激发建模的哈密顿人的研究至关重要,这是捕获在许多准级凝结物质系统中看到的新颖订购的基础。将这种汉密尔顿人扩展到准二维系统的研究非常重要,因为预计电子 - phonon耦合在2D材料系统中新型阶段的稳定或增强中起主要作用。在这项工作中,我们研究了模型系统,这些模型系统使用功能重新分配组(FRG)来描述Holstein(H)和Su-Schrieffer-Heeger(SSH)Hamiltonians中Hubbard耦合与声子模式之间的相互作用。对于两种类型的电子声子耦合,我们发现与抗铁磁($ af $)订购的竞争中的预测电荷密度波相。随着系统的掺杂,过渡移动,两个阶都显示出不稳定的峰。我们将霍尔斯坦模型的准粒子重量的演变与SSH模型的演变进行了比较,因为系统从抗磁磁到电荷订购的基态的系统过渡。最后,我们计算了声子的自我能源,并捕获了电荷排序对声子模式的影响。
Studies of Hamiltonians modeling the coupling between electrons as well as to local phonon excitations have been fundamental in capturing the novel ordering seen in many quasi-one dimensional condensed matter systems. Extending studies of such Hamiltonians to quasi-two dimensional systems is of great current interest, as electron-phonon couplings are predicted to play a major role in the stabilization or enhancement of novel phases in 2D material systems. In this work, we study model systems that describe the interplay between the Hubbard coupling and the phonon modes in the Holstein (H) and Su-Schrieffer-Heeger (SSH) Hamiltonians using the functional renormalization group (fRG). For both types of electron phonon couplings, we find the predicted charge density wave phases in competition with anti-ferromagnetic ($AF$) ordering. As the system is doped, the transition shifts, with both orders showing incommensurate peaks. We compare the evolution of the quasiparticle weight for the Holstein model with that of the SSH model as the systems transition from antiferromagnetic to charge-ordered ground states. Finally, we calculate the self-energy of the phonon and capture the impact of charge ordering on the phonon modes.