Effective model and electron correlations in trilayer nickelate superconductor LaNiO
arXiv:2402.02351 · doi:10.1088/1361-648X/ad512c
Abstract
Recently, signatures of superconductivity with critical temperature from 20 to 30 K have been reported in pressured trilayer nickelate LaNiO through a pressure-induced structure transition. Here we explore the evolution of electronic structures and electronic correlations in different phases of LaNiO under corresponding pressure regions, by using density functional theory (DFT) combined with dynamical mean-field theory (DMFT). Similar to bilayer superconductor LaNiO, the electronic bands in superconducting LaNiO are dominated by Ni-3 and 3 orbits near the Fermi level, in contrast, the inner Ni-O plane in LaNiO generates a doublet hole-pocket Fermi surfaces around the Brillouin-zone corner, meanwhile one branch of the Ni- bands is pushed very close above the Fermi level, which can induce an electron pocket through small electron doping. The DFT+DMFT simulations suggest that the electronic correlations only give minor modification to the Fermi surfaces, meanwhile the Ni- and 3 states on outer Ni-O layers have considerable greater mass enhancements than on the inner layer. The sensitiveness of electronic structure under doping and unique layer dependence of correlation suggest a distinct superconducting mechanism with respect to bilayer LaNiO. Based on the DFT and DFT+DMFT simulations, we eventually derive a trilayer effective tight-binding model, which can produce rather precise electronic bands and Fermi surfaces, hence can serve as an appropriate model to further study the superconducting mechanism and paring symmetry in trilayer LaNiO.
8 pages, 10 figures
References in corpus (10)
- Superconductivity near 80 Kelvin in single crystals of La3Ni2O7 under pressure
- Bilayer two-orbital model of LaNiO under pressure
- Possible -wave superconductivity in LaNiO
- Electronic correlations and superconducting instability in LaNiO under high pressure
- Effective bi-layer model Hamiltonian and density-matrix renormalization group study for the high-Tc superconductivity in LaNiO under high pressure
- Electronic structure, dimer physics, orbital-selective behavior, and magnetic tendencies in the bilayer nickelate superconductor LaNiO under pressure
- An explanation for a universality of transition temperatures in families of copper oxide superconductors
- Flat bands promoted by Hund's rule coupling in the candidate double-layer high-temperature superconductor LaNiO
- Correlated electronic structure, orbital-selective behavior, and magnetic correlations in double-layer LaNiO under pressure
- Computing total energies in complex materials using charge self-consistent DFT+DMFT
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- Decomposition of multilayer superconductivity with interlayer pairing
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- Impact of Pressure and Apical Oxygen Vacancies on Superconductivity in LaNiO
- Spin-density wave and superconductivity in LaNiO under ambient pressure
- Out-of-plane bond-order phase, superconductivity, and their competition in the -- model: Possible implications for bilayer nickelates
- Theoretical study of the crystal structure of the bilayer nickel oxychloride SrNiOCl and analysis of possible unconventional superconductivity
- Superconductivity in LaNiO Under Pressure
- Orbital-Selective Quasiparticle Depletion across the Density Wave Transition in Trilayer Nickelate LaNiO
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- Multiorbital character of the density wave in trilayer nickelate superconductors
- Unconventional Pressure Dependent Interorbital and Interlayer Doping in Superconducting Nickelates
- Effect of doping on the electronic structure, orbital-dependent renormalizations, and magnetic correlations in bilayer LaNiO
- Correlated Dirac semimetal states in nonsymmorphic MIrO (M=Sr, Ba and Ca)
- Magnetically Mediated Cross-Layer Pairing in Pressurized Trilayer Nickelate LaNiO
- Intertwined Charge and Spin Density Waves in Trilayer Nickelate LaNiO Revealed by La NQR
- Layer-Resolved Impurity States Reveal Competing Pairing Mechanisms in Trilayer Nickelate Superconductor LaNiO