English

Electronic correlations and magnetic interactions in infinite-layer NdNiO$_2$

Strongly Correlated Electrons 2020-12-22 v1 Superconductivity Computational Physics

Abstract

The large antiferromagnetic exchange coupling in the parent high-TcT_{\rm c} cuprate superconductors is believed to play a crucial role in pairing the superconducting carriers. The recent observation of superconductivity in hole-doped infinite-layer (IL-) NdNiO2_2 brings to the fore the relevance of magnetic coupling in high-TcT_{\rm c} superconductors, particularly because no magnetic ordering is observed in the undoped IL-NdNiO2_2 unlike in parent copper oxides. Here, we investigate the electronic structure and the nature of magnetic exchange in IL-NdNiO2_2 using state-of-the-art many-body quantum chemistry methods. From a systematic comparison of the electronic and magnetic properties with isostructural cuprate IL-CaCuO2_2, we find that the on-site dynamical correlations are significantly stronger in IL-NdNiO2_2 compared to the cuprate analog. These dynamical correlations play a critical role in the magnetic exchange resulting in an unexpectedly large antiferromagnetic nearest neighbor isotropic JJ of 77 meV between the Ni1+^{1+} ions within the abab-plane. While we find many similarities in the electronic structure between the nickelate and the cuprate, the role of electronic correlations is profoundly different in the two. We further discuss the implications of our findings in understanding the origin of superconductivity in nickelates.

Keywords

Cite

@article{arxiv.2012.11179,
  title  = {Electronic correlations and magnetic interactions in infinite-layer NdNiO$_2$},
  author = {Vamshi M. Katukuri and Nikolay A. Bogdanov and Oskar Weser and Jeroen van den Brink and Ali Alavi},
  journal= {arXiv preprint arXiv:2012.11179},
  year   = {2020}
}

Comments

7 pages including references. For Supplemental Material, please see the publisher website

R2 v1 2026-06-23T21:07:09.030Z