Electronic structure of FeSe monolayer superconductors: shallow bands and correlations
arXiv:1707.05262 · doi:10.1134/S1063776118040106
Abstract
Electronic spectra of typical single FeSe layer superconductors obtained from ARPES data reveal several puzzles: what is the origin of shallow and the so called "replica" bands near M-point and why the hole-like Fermi surfaces near -point are absent. Our extensive LDA+DMFT calculations show that correlation effects on Fe-3d states can almost quantitatively reproduce rather complicated band structure, which is observed in ARPES, in close vicinity of the Fermi level for FeSe/STO and KFeSe. Rather unusual shallow electron-like bands around the M(X)-point in the Brillouin zone are well reproduced. However, in FeSe/STO correlation effects are apparently insufficient to eliminate the hole-like Fermi surfaces around the -point, which are not observed in most ARPES experiments. Detailed analysis of the theoretical and experimental quasiparticle bands with respect to their origin and orbital composition is performed. It is shown that for FeSe/STO system the LDA calculated Fe-3d band, renormalized by electronic correlations within DMFT gives the quasiparticle band almost exactly in the energy region of the experimentally observed "replica" quasiparticle band at the M-point. For the case of KFeSe most bands observed in ARPES can also be understood as correlation renormalized Fe-3d LDA calculated bands, with overall semi-quantitative agreement with our LDA+DMFT calculations. Thus the shallow bands near the M-point are common feature for FeSe-based systems, not just FeSe/STO. We also present some simple estimates of "forward scattering" electron-optical phonon interaction at FeSe/STO interface, showing that it is apparently irrelevant for the formation of "replica" band in this system and significant increase of superconducting .
15 pages, 16 figures, 1 table. arXiv admin note: text overlap with arXiv:1702.00949
References in corpus (30)
- Continuous-time Monte Carlo methods for quantum impurity models
- Superconductivity in single-layer films of FeSe with a transition temperature above 100 K
- Density functional study of FeS, FeSe and FeTe: Electronic structure, magnetism, phonons and superconductivity
- To What Extent Iron-Pnictide New Superconductors Have Been Clarified: A Progress Report
- Quantum Monte Carlo Impurity Solver for Cluster DMFT and Electronic Structure Calculations in Adjustable Base
- Structure determination and coexistence of superconductivity and antiferromagnetic order in (Li0.8Fe0.2)OHFeSe
- Emergence of the nematic electronic state in FeSe
- A review of Fe-chalcogenide superconductors: the simplest Fe-based superconductor
- High - Temperature Superconductivity in Iron Based Layered Compounds
- Iron based superconductors: magnetism, superconductivity and electronic structure
- Observation of Temperature-Induced Crossover to an Orbital-Selective Mott Phase in AFeSe (A=K, Rb) Superconductors
- Interface induced high temperature superconductivity in single unit-cell FeSe films on SrTiO3(110)
- Coexistence of 3d-ferromagnetism and superconductivity in [(Li(1-x)Fex)OH](Fe(1-y)Liy)Se
- Electronic Structure and Superconductivity of FeSe-Related Superconductors
- Electronic Structure of Prototype AFe_2As_2 and ReOFeAs High-Temperature Superconductors: a Comparison
- High-temperature superconductivity in single-unit-cell FeSe films on anatase TiO2(001)
- Classification of the electronic correlation strength in the Fe-pnictides: The case of the parent compound BaFe2As2
- The intercalation chemistry of layered iron chalcogenide superconductors
- Electronic Structure, Topological Phase Transitions and Superconductivity in (K,Cs)xFe2Se2
- Ab initio Study of Cross-Interface Electron-Phonon Couplings in FeSe Thin Films on SrTiO and BaTiO
- Charge transfer and electron-phonon coupling in monolayer FeSe on Nb doped SrTiO
- Aspects of electron-phonon interactions with strong forward scattering in FeSe Thin Films on SrTiO substrates
- High Temperature Superconductivity in FeSe Monolayers
- Electronic structure of FeSe monolayer superconductors
- The electron-phonon interaction with forward scattering peak is a relevant approach to high Tc superconductivity in FeSe films on SrTiO3 and TiO2
- Electronic structure of iron-based superconductors: from pnictides to chalcogenides and other similar systems
- On the origin of the shallow and "replica" bands in FeSe monolayer superconductors
- Effects of interface oxygen vacancies on electronic bands of FeSe/SrTiO3(001)
- Observation of a Hidden Hole-Like Band Approaching the Fermi Level in K-Doped Iron Selenide Superconductor
- LDA'+DMFT Investigation of Electronic Structure of K{1-x}Fe{2-y}Se2 Superconductor
Cited by in corpus (11)
- Unconventional pairing in single FeSe layers
- Self-consistent temperature dependence of quasiparticle bands in monolayer FeSe on SrTiO
- Twisted-bilayer FeSe and the Fe-based superlattices
- Electron - phonon coupling in Eliashberg - McMillan theory beyond adiabatic approximation
- Antiadiabatic phonons, Coulomb pseudopotential and superconductivity in Eliashberg - McMillan theory
- Variation of carrier density in semimetals via short-range correlation: A case study with nickelate NdNiO
- Effect of the additional Se layer on the electronic structure of iron-based superconductor FeSe/SrTiO
- Identifying a forward scattering superconductor through pump-probe spectroscopy
- Quantitative comparison of LDA+DMFT and ARPES spectral functions
- Hidden Fermi surface in KFeSe: LDA+DMFT study
- Superconductor-polariton non-dissipative drag in optical microcavity