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Electronic Reconstruction across the Tilt-Free Transition in La3Ni2O7

Mengjie Kong, Gergely Németh, Yingpeng Yu, Bosen Wang, Jianping Sun, Jinguang Cheng, Ferenc Borondics, Bastien Michon

cond-mat.supr-conarXiv:2609.40139

Abstract

The emergence of high-Tc superconductivity in pressurized La3Ni2O7 is intimately linked to a structural transition that suppresses the tilts of the NiO6 octahedra, yet its impact on the electronic structure remains poorly understood. Here, we probe the electronic response across this tilt-free transition at Tst 544 K using broadband infrared-to-visible reflectivity at ambient pressure, covering photon energies from 15 meV to 3.2 eV. We observe a pronounced redistribution of spectral weight over an exceptionally broad energy range, with spectral weight transferred from excitations between 1 and 3 eV toward low-energy excitations below 1 eV. Most strikingly, two low-energy interband excitations progressively converge and merge upon entering the tilt-free phase, revealing a substantial reconstruction of the finite-energy electronic structure. These changes point to a reconstruction of the bilayer Ni 3dz2-derived electronic states, whose interlayer coupling is central to proposed mechanisms of superconductivity in La3Ni2O7. Our results establish the tilt-free transition as a direct route to reorganizing the electronic degrees of freedom implicated in high-Tc superconductivity and provide an ambient-pressure reference for the electronic structure of the superconducting state.

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