Orbital Separation of Charge Order and Superconductivity in LaSrCuO
arXiv:2601.01643
Abstract
We report a combined x-ray absorption (XAS) and oxygen -edge resonant inelastic x-ray scattering (RIXS) study of charge order in underdoped LaSrCuO () under uniaxial -axis pressure. We find that compressive -axis strain modifies the charge order only within the superconducting state, with a striking polarization dependence: suppression in the channel and enhancement in the channel. X-ray absorption spectra reveal concomitant strain-induced modifications of the oxygen pre-edge and upper Hubbard band, consistent with increased orbital admixture. Our results suggest that -axis pressure drives an orbital separation between superconductivity, rooted in states, and charge order, which gradually shifts to the channel. This orbital separation reveals a way for superconductivity and charge order to coexist in the cuprates with minimal competition. Furthermore, it suggests that the multi-order phase diagram of LaSrCuO cannot be realistically described within single band models usually used to describe cuprate physics.
9 pages, 7 figures