Probing inter- and intrachain Zhang-Rice excitons in Li$_2$CuO$_2$ and determining their binding energy
Claude Monney, Valentina Bisogni, Ke-Jin Zhou, Roberto Kraus, Vladimir, Strocov, G\"unter Behr, Stefan-Ludwig Drechsler, Helge Rosner, Steve, Johnston, Jochen Geck, Thorsten Schmitt

TL;DR
This study uses advanced RIXS techniques to investigate Zhang-Rice excitons in Li$_2$CuO$_2$, revealing their occurrence, binding energy, and dependence on spin correlations in a cuprate material.
Contribution
It provides the first direct experimental probing of intra- and interchain Zhang-Rice singlets and their binding energies in a quasi-one-dimensional cuprate using RIXS.
Findings
Observation of intra- and interchain Zhang-Rice singlets.
Extraction of the Zhang-Rice singlet binding energy.
Identification of Zhang-Rice triplet excitations.
Abstract
Cuprate materials, like those hosting high temperature superconductivity, represent a famous class of materials where the correlations between the strongly entangled charges and spins produce complex phase diagrams. Several years ago the Zhang-Rice singlet was proposed as a natural quasiparticle in hole-doped cuprates. The occurance and binding energy of this quasiparticle, consisting of a pair of bound holes with antiparallel spins on the same CuO plaquette, depends on the local electronic interactions, which are fundamental quantities for understanding the physics of the cuprates. Here, we employ state-of-the-art Resonant Inelastic X-ray Scattering (RIXS) to probe the correlated physics of the CuO plaquettes in the quasi-one dimensional chain cuprate LiCuO. By tuning the incoming photon energy to the O -edge, we populate bound states related to the Zhang-Rice…
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