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  • Letter

Pair correlations of the hybridized orbitals in a ladder model for the bilayer nickelate La3Ni2O7

Masataka Kakoi1, Tatsuya Kaneko1, Hirofumi Sakakibara2, Masayuki Ochi1,3, and Kazuhiko Kuroki1

  • 1Department of Physics, Osaka University, Toyonaka, Osaka 560-0043, Japan
  • 2Advanced Mechanical and Electronic System Research Center(AMES), Faculty of Engineering, Tottori University, Tottori, Tottori 680-8552, Japan
  • 3Forefront Research Center, Osaka University, Toyonaka, Osaka 560-0043, Japan

Phys. Rev. B 109, L201124 – Published 24 May, 2024

DOI: https://doi.org/10.1103/PhysRevB.109.L201124

Abstract

To clarify the nature of high-temperature superconductivity in the bilayer nickelate La3Ni2O7 under pressure, we investigate, using the density-matrix renormalization group method, the pair correlations in the two-orbital t−J ladder model. While the interchain-intraorbital pair correlations exhibit a slow power-law decay in both orbitals, the interorbital pair correlation also develops strongly enough to be comparable with the intraorbital correlations. These intra and interorbital pair correlations are enhanced by Hund's coupling, but more importantly, the interorbital pair correlation develops even when interorbital pairing glue mediated by Hund's coupling is absent. Our finding suggests that the pair correlation in the present system develops as a hybridized two-orbital entity, which may have some implications on the superconductivity in the bilayer nickelate.

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