Axis-resolved transport measurements on RP nickelates show that stronger interlayer electronic coherence correlates with higher maximum Tc under pressure and sensitively tracks magnetic orders.
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Oxygen-vacancy doping induces metallic conduction and ferromagnetic order (Tc up to 11 K) in EuTiO3, producing a phase diagram distinct from cation-doped versions, supported by magnetization, DFT, diffuse scattering, and specific heat.
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Interlayer electronic coherence links magnetism and superconductivity in Ruddlesden-Popper nickelates
Axis-resolved transport measurements on RP nickelates show that stronger interlayer electronic coherence correlates with higher maximum Tc under pressure and sensitively tracks magnetic orders.
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Tuning charge-transport properties and magnetic order in metallic EuTiO$_{3-\delta}$
Oxygen-vacancy doping induces metallic conduction and ferromagnetic order (Tc up to 11 K) in EuTiO3, producing a phase diagram distinct from cation-doped versions, supported by magnetization, DFT, diffuse scattering, and specific heat.