English

Strong coupling nature of kagome superconductivity in LaRu$_3$Si$_2$

Superconductivity 2021-04-07 v1

Abstract

We report muon spin rotation (μ{\mu}SR) experiments together with first-principles calculations on microscopic properties of superconductivity in the kagome superconductor LaRu3_3Si2_2 with TcT_{\rm c} {\simeq} 7K. We find that the calculated normal state band structure features a kagome flat band and Dirac as well as van Hove points formed by the Ru-dz2dz^2 orbitals near the Fermi level. Below TcT_{\rm c}, μ{\mu}SR reveals isotropic type-II superconductivity, which is robust against hydrostatic pressure up to 2 GPa. Intriguingly, the ratio 2Δ/kBTc\Delta/k_{\rm B}T_{\rm c} {\simeq} 4.3 (where Δ{\Delta} is the superconducting energy gap) is in the strong coupling limit, and TcT_{\rm c}/λeff2\lambda_{eff}^{-2} (where λ{\lambda} is the penetration depth) is comparable to that of high-temperature unconventional superconductors. We also find that electron-phonon coupling alone can only reproduce small fraction of TcT_{\rm c} from calculations, which suggests other factors in enhancing TcT_{\rm c} such as the correlation effect from the kagome flat band, the van Hove point on the kagome lattice, and high density of states from narrow kagome bands. Our experiments and calculations taken together point to strong coupling and the unconventional nature of kagome superconductivity in LaRu3_3Si2_2.

Keywords

Cite

@article{arxiv.2012.15654,
  title  = {Strong coupling nature of kagome superconductivity in LaRu$_3$Si$_2$},
  author = {C. Mielke and Y. Qin and J. -X. Yin and H. Nakamura and D. Das and K. Guo and R. Khasanov and J. Chang and Z. Q. Wang and S. Jia and S. Nakatsuji and A. Amato and H. Luetkens and G. Xu and Z. M. Hasan and Z. Guguchia},
  journal= {arXiv preprint arXiv:2012.15654},
  year   = {2021}
}

Comments

15 pages, 9 figures