Emergence and tunability of Fermi-pocket and electronic instabilities in layered Nickelates
arXiv:2407.16042 · doi:10.1088/1361-648X/ada908
Abstract
Layered Nickelates have gained intensive attention as potential high-temperature superconductors, showing similarities and subtle differences to well-known Cuprates. This study introduces a modelling framework to analyze the tunability of electronic structures by focusing on effective orbitals and additional Fermi pockets, mimicking doping or external pressure qualitatively. It investigates the role of the orbital in interlayer hybridization, which leads to the formation of a second pocket in the Fermi surface. The resulting effective model also predicts specific charge and spin susceptibility in the form of Lindhard susceptibility at wave vector , which can be tuned by doping or pressure. These results provide valuable insights into tunable orbital contributions and their influence on potential ordering and electronic instabilities in Layered Nickelates.
References in corpus (60)
- Superconductivity near 80 Kelvin in single crystals of La3Ni2O7 under pressure
- Superconducting Dome in NdSrNiO Infinite Layer Films
- Electronic structure of the parent compound of superconducting infinite-layer nickelates
- Phase diagram and superconducting dome of infinite-layer thin films
- Ground state oxygen holes and the metal-insulator transition in the negative charge transfer rare-earth nickelates
- Nickelate superconductivity without rare-earth magnetism: (La,Sr)NiO
- Formation of 2D single-component correlated electron system and band engineering in the nickelate superconductor NdNiO2
- Self-doped Mott insulator for parent compounds of nickelate superconductors
- Superconductivity in infinite-layer nickelate LaCaNiO thin films
- Similarities and differences between infinite-layer nickelates and cuprates and implications for superconductivity
- The critical nature of the Ni spin state in doped NdNiO
- Robust -wave superconductivity of infinite-layer nickelates
- Model construction and a possibility of cuprate-like pairing in a new d9 nickelate superconductor (Nd,Sr)NiO2
- Late transition-metal oxides with infinite-layer structure: Nickelates versus cuprates
- Nickelate superconductors -- a renaissance of the one-band Hubbard model
- Phase Diagram of Infinite Layer Praseodymium Nickelate PrSrNiO Thin Films
- Two superconducting components with different symmetries in Nd1-xSrxNiO2 films
- Nickelate superconductors Multiorbital nature and spin freezing
- A substantial hybridization between correlated Ni-d orbital and itinerant electrons in infinite-layer nickelates
- Pressure-induced monotonic enhancement of Tc to over 30 K in the superconducting Pr0.82Sr0.18NiO2 thin films
- Charge density waves in infinite-layer NdNiO nickelates
- Role of states in infinite-layer NdNiO
- Electronic structure of rare-earth infinite-layer ReNiO2 (Re=La, Nd)
- Hund's metal physics: from SrNiO to NdNiO
- Charge and spin order dichotomy in NdNiO driven by SrTiO capping layer
- Trends in electronic structures and -wave pairing for the rare-earth series in bilayer nickelate superconductor NiO
- Intrinsic magnetism in superconducting infinite-layer nickelates
- Multiorbital processes rule the NdSrNiO normal state
- Electronic Structure Trends Across the Rare-Earth Series in Superconducting Infinite Layer Nickelates
- Effective Hamiltonian for superconducting Ni oxides NdSrNiO
- Superconductivity in nickelate and cuprate superconductors with strong bilayer coupling
- Magnetic excitations and their anisotropy in YBCO: slave-boson mean-field analysis of bilayer t-J model
- Electronic structure of (LaNiO)/(LaAlO) heterostructures grown along [111]
- Quenched pair breaking by interlayer correlations as a key to superconductivity in LaNiO
- Superconducting Instabilities in Strongly-Correlated Infinite-Layer Nickelates
- Phase diagram of nickelate superconductors calculated by dynamical vertex approximation
- Absence of Charge Density Wave Order in the Infinite Layer Nickelates
- Electronic structure and magnetism in infinite-layer nickelates RNiO (R= La-Lu)
- Nickelate superconductors: an ongoing dialog between theory and experiments
- Cuprate-like Electronic Structures in Infinite-Layer Nickelates with Substantial Hole Dopings
- Tuning the metal-insulator transition in NdNiO3 heterostructures via Fermi surface instability and spin-fluctuations
- Magnetic exchange coupling in cuprate-analog nickelates
- Dynamic spin susceptibility of superconducting cuprates: A microscopic theory of the magnetic resonance mode
- Low Valence Nickelates: Launching the Nickel Age of Superconductivity
- Magnetic properties and pseudogap formation in infinite-layer nickelates: insights from the single-band Hubbard model
- Unconventional superconductivity without doping: infinite-layer nickelates under pressure
- An electronic origin of charge order in infinite-layer nickelates
- Spin excitations in nickelate superconductors
- Microscopic Theory of Superconducting Phase Diagram in Infinite-Layer Nickelates
- Leading theories of the cuprate superconductivity: a critique
- Interplay between Zhang-Rice singlets and high-spin states in a model for doped NiO planes
- Emergent flat-band physics in multilayer nickelates
- Many-body electronic structure of layered nickelates
- Screening in a two-band model for superconducting infinite-layer nickelate
- Antiferromagnetic fluctuations and a dominant -wave pairing symmetry in nickelate-based superconductors
- Scanning SQUID study of ferromagnetism and superconductivity in infinite-layer nickelates
- Closing in on possible scenarios for infinite-layer nickelates: comparison of dynamical mean-field theory with angular-resolved photoemission spectroscopy
- Two Distinct Charge Orders in Infinite-layer PrNiO2+δ revealed by Resonant X-ray Diffraction
- +EDMFT investigation of PrSrNiO under pressure
- The emergence of antiferromagnetic correlations and Kondo-like features in a two-band model for infinite-layer nickelates