We report first-principles density-functional theory results on the electronic and magnetic properties of the recently discovered superconducting FeS, which reveals important differences with the other members of the iron-chalcogenides (FeSe and FeTe). The band structure of FeS is characterized by two hole bands at the Fermi energy with a fully occupied dxy band at Γ. A stripe-antiferromagnetic phase with a small magnetic moment is the most stable magnetic solution, but different magnetic phases have comparable energies indicating a tight competition. Including local interactions treated within dynamical mean-field theory, we find significant correlation effects with orbital-dependent strength and character, even if all the fingerprints of...
We report a detailed theoretical study of the electronic structure, spectral properties, and lattice...
In Physics, one of the current hot research related to material for energy storage problem is findin...
Iron-based binary chalcogenide superconductors FeSe and FeS have attracted much recent attention due...
We report first-principles density-functional theory results on the electronic and magnetic properti...
We report first-principles density-functional theory results on the electronic and magnetic propert...
We study the electronic structure of iron-based superconductors $FeSe_{1-x}Te_x$ within the density ...
We present results of a detailed theoretical study of the electronic, magnetic, and structural prope...
We investigate the band structure of Fe-based superconductors using the first-principle method of de...
We present first-principles density-functional-theory-based calculations to determine the effects of...
We present first-principles density-functional-theory-based calculations to determine the effects of...
We explore the electronic, transport and thermoelectric properties of Fe1+ySexTe1−x compounds to cla...
Iron-based chalcogenides are complex superconducting systems in which orbitally-dependent electronic...
FeSe is a fascinating superconducting material at the frontier of research in condensed matter physi...
FeSe is a fascinating superconducting material at the frontier of research in condensed matter physi...
We explore the electronic, transport and thermoelectric properties of Fe1+ySexTe1-x compounds to cla...
We report a detailed theoretical study of the electronic structure, spectral properties, and lattice...
In Physics, one of the current hot research related to material for energy storage problem is findin...
Iron-based binary chalcogenide superconductors FeSe and FeS have attracted much recent attention due...
We report first-principles density-functional theory results on the electronic and magnetic properti...
We report first-principles density-functional theory results on the electronic and magnetic propert...
We study the electronic structure of iron-based superconductors $FeSe_{1-x}Te_x$ within the density ...
We present results of a detailed theoretical study of the electronic, magnetic, and structural prope...
We investigate the band structure of Fe-based superconductors using the first-principle method of de...
We present first-principles density-functional-theory-based calculations to determine the effects of...
We present first-principles density-functional-theory-based calculations to determine the effects of...
We explore the electronic, transport and thermoelectric properties of Fe1+ySexTe1−x compounds to cla...
Iron-based chalcogenides are complex superconducting systems in which orbitally-dependent electronic...
FeSe is a fascinating superconducting material at the frontier of research in condensed matter physi...
FeSe is a fascinating superconducting material at the frontier of research in condensed matter physi...
We explore the electronic, transport and thermoelectric properties of Fe1+ySexTe1-x compounds to cla...
We report a detailed theoretical study of the electronic structure, spectral properties, and lattice...
In Physics, one of the current hot research related to material for energy storage problem is findin...
Iron-based binary chalcogenide superconductors FeSe and FeS have attracted much recent attention due...