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Electronic Properties, Band Structure, and Fermi Surface Instabilities of Ni1+/Ni2+ Nickelate La3Ni2O6, Isoelectronic with Superconducting Cuprates

Viktor V. Poltavets, Martha Greenblatt, Gerhard H. Fecher, Claudia Felser

DOI 10.1103/PhysRevLett.102.046405 · Physical Review Letters

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Abstract

Electronic structure calculations were performed for the mixed-valent Ni1+/Ni2+ nickelate La3Ni2O6, which exhibits electronic instabilities of the Fermi surface similar to that of the isostructural superconducting La2CaCu2O6 cuprate. La3Ni2O6 shows activated hopping, which fits to Mott’s variable-range-hopping model with localized states near the Fermi level. However, a simple local spin density approximation calculation leads to a metallic ground state. The calculations including local density approximation+Hubbard U and hybrid functionals indicate a multiply degenerate magnetic ground state. For electron-doped La2ZrNi2O6, which is isoelectronic with La2CaCu2O6, an antiferromagnetic insulating ground state is found when correlations are included. The nickelates are thus ideal model systems for a deeper understanding of correlated transition metal compounds, magnetism, and superconductivity.

Source-reported materials — not catalogue approval

FormulaReported Tc (K)Pressure (GPa)Type
La2CaCu2O6

Archive — visibility unverified

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60Pressure not reportedunknown
LuNi2B2C

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Source-occurrence policy only; no material identity or catalogue acceptance is inferred from the formula.

16Pressure not reportedunknown

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