English

Emergence of Charge Loop Current in Geometrically Frustrated Hubbard Model: Functional Renormalization Group Study

Strongly Correlated Electrons 2021-12-02 v3

Abstract

Spontaneous current orders due to odd-parity order parameters attract increasing attention in various strongly correlated metals. Here, we discover a novel spin-fluctuation-driven charge loop current (cLC) mechanism based on the functional renormalization group (fRG) theory. The present mechanism leads to the ferro-cLC order in a simple frustrated chain Hubbard model. The cLC appears between the antiferromagnetic and dd-wave superconducting (ddSC) phases. While the microscopic origin of the cLC has a close similarity to that of the ddSC, the cLC transition temperature TcLCT_{\rm cLC} can be higher than the ddSC one for wide parameter range. Furthermore, we reveal that the ferro cLC order is driven by the strong enhancement of the forward scatterings g2g_2 and g4g_4 owing to the two dimensionality based on the gg-ology language. The present study indicates that the cLC can emerge in metals near the magnetic criticality with geometrical frustration

Keywords

Cite

@article{arxiv.2010.16109,
  title  = {Emergence of Charge Loop Current in Geometrically Frustrated Hubbard Model: Functional Renormalization Group Study},
  author = {Rina Tazai and Youichi Yamakawa and Hiroshi Kontani},
  journal= {arXiv preprint arXiv:2010.16109},
  year   = {2021}
}

Comments

11 pages, 15 figures, has been published in Phys. Rev. B

R2 v1 2026-06-23T19:46:12.014Z