论文标题

在拓扑Lifshittion过渡附近的库仑相互作用和重新归一化

Coulomb interactions and renormalization of semi-Dirac fermions near a topological Lifshitz transition

论文作者

Kotov, Valeri N., Uchoa, Bruno, Sushkov, Oleg P.

论文摘要

我们旨在了解如何在拓扑Lifshitz Transition处的远距离库仑电子 - 电子相互作用,在其中两个狄拉克锥合并。在过渡时,电子光谱的特征是一个方向上的大量二次色散,而另一个方向则保持线性。我们发现,在裸露理论中,在最低的阶段,对准粒子质量的非常规的对数平方(双对数)校正导致在扰动重射更归一化组方程的精确溶液中重新定性为强质量重新归一化。这种行为有效地消除了分散体的曲率,并导致低能的狄拉克锥恢复:系统朝着狄拉克分散体流动,这是各向异性但在动量中线性的,具有相互作用的对数调制。与恢复的临界狄拉克频谱相关的浆果相为零 - 由时间反向对称性保证的属性,并没有重新归一化。我们的结果与大$ N $方法中发现的行为形成鲜明对比。

We aim to understand how the spectrum of semi-Dirac fermions is renormalized due to long-range Coulomb electron-electron interactions at a topological Lifshitz transition, where two Dirac cones merge. At the transition, the electronic spectrum is characterized by massive quadratic dispersion in one direction, while it remains linear in the other. We have found that, to lowest order, the unconventional log squared (double logarithmic) correction to the quasiparticle mass in bare perturbation theory leads to resummation into strong mass renormalization in the exact full solution of the perturbative renormalization group equations. This behavior effectively wipes out the curvature of the dispersion and leads to Dirac cone restoration at low energy: the system flows towards Dirac dispersion which is anisotropic but linear in momentum, with interaction-depended logarithmic modulation. The Berry phase associated with the restored critical Dirac spectrum is zero - a property guaranteed by time-reversal symmetry and unchanged by renormalization. Our results are in contrast with the behavior that has been found within the large-$N$ approach.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源