Correlation-driven topological Fermi surface transition in FeSe
arXiv:1411.0604 · doi:10.1103/PhysRevLett.115.106402
Abstract
The electronic structure and phase stability of paramagnetic FeSe is computed by using a combination of ab initio methods for calculating band structure and dynamical mean-field theory. Our results reveal a topological change (Lifshitz transition) of the Fermi surface upon a moderate expansion of the lattice. The Lifshitz transition is accompanied with a sharp increase of the local moments and results in an entire reconstruction of magnetic correlations from the in-plane magnetic wave vector to . We attribute this behavior to a correlation-induced shift of the Van Hove singularity originating from the and bands at the M-point across the Fermi level. We propose that superconductivity is strongly influenced, or even induced, by a Van Hove singularity.
5 pages, 4 figures
References in corpus (38)
- Quantum ESPRESSO: a modular and open-source software project for quantum simulations of materials
- Superconductivity at 43 K in Samarium-arsenide Oxides
- Continuous-time Monte Carlo methods for quantum impurity models
- High-temperature superconductivity in iron-based materials
- Superconductivity at 36 K in beta-Fe1.01Se with the compression of the interlayer separation under pressure
- Strong electronic correlations from Hund's coupling
- Density functional study of FeS, FeSe and FeTe: Electronic structure, magnetism, phonons and superconductivity
- Superconductivity at 27 K in tetragonal FeSe under high pressure
- Magnetism, superconductivity, and pairing symmetry in Fe-based superconductors
- Incommensurate magnetic order in the alpha-Fe(Te,Se) superconductor systems
- First-order magnetic and structural phase transitions in FeSeTe
- Magnetism and its microscopic origin in iron-based high-temperature superconductors
- Correlated electronic structure of LaOFeAs
- Bulk Superconductivity at 14 K in Single Crystals of Fe1+yTexSe1-x
- Dynamical Mean-Field Theory within an Augmented Plane-Wave Framework: Assessing Electronic Correlations in the Iron Pnictide LaFeAsO
- Crystal structure of the new FeSe1-x superconductor
- Magnetism and Charge Dynamics in Iron Pnictides
- Reconstruction of Band Structure Induced by Electronic Nematicity in an FeSe Superconductor
- From (pi, 0) magnetic order to superconductivity with (pi, pi) magnetic resonance in Fe1.02(Te1-xSex)
- Theoretical evidence for strong correlations and incoherent metallic state in FeSe
- Two-dimensional resonant magnetic excitation in BaFe1.84Co0.16As2
- Spin Gap and Resonance at the Nesting Wavevector in Superconducting FeSe0.4Te0.6
- Fermi surface topology and low-lying quasiparticle dynamics of parent FeTe/Se Superconductor by orbital-polarization resolved ARPES
- Density Functional Study of Excess Fe in FeTe: Magnetism and Doping
- Fractional power-law behavior and its origin in iron-chalcogenide and ruthenate superconductors: Insights from first-principles calculations
- Construction and solution of a Wannier-functions based Hamiltonian in the pseudopotential plane-wave framework for strongly correlated materials
- U(1) Slave-spin theory and its application to Mott transition in a multi-orbital model for iron pnictides
- Spin waves in the magnetically ordered iron chalcogenide FeTe
- Magnetism Driven by Anion Vacancies in Superconducting --FeSe
- Strong Pressure Dependent Electron-Phonon Coupling in FeSe
- Many-body effects in iron pnictides and chalcogenides -- non-local vs dynamic origin of effective masses
- Coulomb repulsion and correlation strength in LaFeAsO from Density Functional and Dynamical Mean-Field Theories
- Classification of the electronic correlation strength in the Fe-pnictides: The case of the parent compound BaFe2As2
- Correlated pressure effects on structure and superconductivity in LaFeAsO0.9F0.1
- Strong correlation and massive spectral-weight redistribution induced spin density wave in a-Fe1.06Te
- Evolution from incoherent to coherent electronic states and its implications to superconductivity in FeTe1-xSex
- Linear-Temperature Dependence of Static Magnetic Susceptibility in LaFeAsO from Dynamical Mean-Field Theory
- Electronic Structure of Superconducting FeSe Studied by High-Resolution Photoemission Spectroscopy
Cited by in corpus (33)
- Lifshitz transition and frustration of magnetic moments in infinite-layer NdNiO upon hole-doping
- Correlation-driven topological and valley states in monolayer VSiP
- Formation of Hubbard-like bands as a fingerprint of strong electron-electron interactions in FeSe
- ComDMFT: a Massively Parallel Computer Package for the Electronic Structure of Correlated-Electron Systems
- Fermi surface reconstruction in FeSe under high pressure
- Fermi-liquid behavior and thermal conductivity of ε-iron at Earth's core conditions
- Emergence of quantum critical charge and spin-state fluctuations near the pressure-induced Mott transition in MnO, FeO, CoO, and NiO
- Competing collinear magnetic structures in superconducting FeSe by first principles quantum Monte Carlo calculations
- Phonon anomalies in FeS
- Effect of electron correlations on the electronic structure and phase stability of FeSe upon lattice expansion
- Effect of epitaxial strain on the electronic structure and magnetic correlations in infinite-layer (Nd,Sr)NiO
- Correlation strength, Lifshitz transition and the emergence of a two- to three-dimensional crossover in FeSe under pressure
- Phases of Attractive Fermi Gases in Synthetic Dimensions
- The ab initio study of unconventional superconductivity in CeCoIn and FeSe
- LDA+DMFT approach to ordering phenomena and the structural stability of correlated materials
- Rigorous symmetry adaptation of multiorbital rotationally invariant slave-boson theory with application to Hund's rules physics
- Highly mobile carriers in orthorhombic phases of iron-based superconductors FeSeS
- Correlated electronic structure, orbital-dependent correlations, and Lifshitz transition in tetragonal FeS
- Unusual Mott transition associated with charge-order melting in BiNiO under pressure
- Transition from Pauli paramagnetism to Curie-Weiss behaviour in vanadium
- Fluctuations and pairing in Fe-based superconductors: Light scattering experiments
- Correlation strength, orbital-selective incoherence, and local moments formation in the magnetic MAX-phase MnGaC
- Metal-insulator transition and local-moment collapse in negative charge-transfer CaFeO under pressure
- Charge disproportionation and site-selective local magnetic moments in the post-perovskite-type FeO under ultra-high pressures
- Interaction-driven Lifshitz transition with dipolar fermions in optical lattices
- Phonon anomalies associated with spin reorientation in the Kagome ferromagnet Fe3Sn2
- Electronic correlation effects and local magnetic moments in L1 phase of FeNi
- Orbital-selective coherence-incoherence crossover and metal-insulator transition in Cu-doped NaFeAs
- Accurate modeling of FeSe with screened Fock exchange and Hund's metal correlations
- Novel =3/2 Metallic Phase and Unconventional Superconductivity in GaTaSe
- Coulomb correlations and magnetic properties of L1 FeCo: a DFT+DMFT study
- Symmetry-breaking-induced topology in FeSe
- Normal state magnetotransport properties of -FeSe superconductors