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Interlayer Coupling Driven High-Temperature Superconductivity in La$_3$Ni$_2$O$_7$ Under Pressure

Superconductivity 2024-04-09 v3 Strongly Correlated Electrons

Abstract

The newly discovered high-temperature superconductivity in La3_3Ni2_2O7_7 under pressure has attracted a great deal of attentions. The essential ingredient characterizing the electronic properties is the bilayer NiO2_2 planes coupled by the interlayer bonding of 3dz23d_{z^2} orbitals through the intermediate oxygen-atoms. In the strong coupling limit, the low energy physics is described by an intralayer antiferromagnetic spin-exchange interaction JJ_{\parallel} between 3dx2y23d_{x^2-y^2} orbitals and an interlayer one JJ_{\perp} between 3dz23d_{z^2} orbitals. Taking into account Hund's rule on each site and integrating out the 3dz23d_{z^2} spin degree of freedom, the system reduces to a single-orbital bilayer tt-JJ model based on the 3dx2y23d_{x^2-y^2} orbital. By employing the slave-boson approach, the self-consistent equations for the bonding and pairing order parameters are solved. Near the physically relevant 14\frac{1}{4}-filling regime (doping δ=0.30.5\delta=0.3\sim 0.5), the interlayer coupling JJ_{\perp} tunes the conventional single-layer dd-wave superconducting state to the ss-wave one. A strong JJ_{\perp} could enhance the inter-layer superconducting order, leading to a dramatically increased TcT_c. Interestingly, there could exist a finite regime in which an s+ids+id state emerges.

Keywords

Cite

@article{arxiv.2307.14965,
  title  = {Interlayer Coupling Driven High-Temperature Superconductivity in La$_3$Ni$_2$O$_7$ Under Pressure},
  author = {Chen Lu and Zhiming Pan and Fan Yang and Congjun Wu},
  journal= {arXiv preprint arXiv:2307.14965},
  year   = {2024}
}

Comments

Version accepted by Phys. Rev. Lett

R2 v1 2026-06-28T11:42:00.667Z