Spacer-layer Cl doping of low-n La nickelates, tuned to the n=6 Ni valence, produces Ni-d mass enhancements and self-energies comparable to superconducting higher-n members while preserving the low-energy electronic structure.
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Localized Zhang-Rice singlets from doped holes induce J2 and J3 superexchanges that frustrate Néel order and explain hole-electron magnetic asymmetry in cuprates.
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Layer-resolved Electronic Structure and Correlation of Low-$n$ Square-planar Nickelates: A DFT+DMFT Prediction of Superconducting Candidates
Spacer-layer Cl doping of low-n La nickelates, tuned to the n=6 Ni valence, produces Ni-d mass enhancements and self-energies comparable to superconducting higher-n members while preserving the low-energy electronic structure.
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Frustration from Localized Zhang-Rice States: A Unified Theory of Doping-Driven Magnetic Transitions in Cuprates
Localized Zhang-Rice singlets from doped holes induce J2 and J3 superexchanges that frustrate Néel order and explain hole-electron magnetic asymmetry in cuprates.