A mirror-selective itinerant SDW model unifies magnetic order and excitations in Ruddlesden-Popper nickelates as fundamentally itinerant rather than local-moment.
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Hole doping at x ≈ 0.4 in La3-xSrxNi2O7 produces nearly perfect Fermi-surface nesting at Q = (π, π), raising the superconducting eigenvalue to experimentally accessible levels at ambient pressure.
citing papers explorer
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Itinerant Nature of Spin-Density-Wave Order in Ruddlesden-Popper Nickelates
A mirror-selective itinerant SDW model unifies magnetic order and excitations in Ruddlesden-Popper nickelates as fundamentally itinerant rather than local-moment.
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Nearly perfect Fermi surface nesting in hole-doped La$_3$Ni$_2$O$_7$ enables bulk superconductivity without pressure or strain
Hole doping at x ≈ 0.4 in La3-xSrxNi2O7 produces nearly perfect Fermi-surface nesting at Q = (π, π), raising the superconducting eigenvalue to experimentally accessible levels at ambient pressure.