Iron-based binary chalcogenide superconductors FeSe and FeS have attracted much recent attention due to their complex orbital-selective correlations and Cooper pairing, offering the minimal model system holding the key properties to understanding the physics of high-Tc superconductors. Here, using density functional plus dynamical mean-field theory method with full self-consistency over the charge density, we study the effect of electronic correlations on the electronic structure, magnetic properties, orbital-dependent band renormalizations, and Fermi surface of the tetragonal phase of bulk FeS. We perform a direct structural optimization of the P4/nmm crystal structure of paramagnetic FeS, minimizing the total energy of FeS with respect to...
Based on local-density approximation plus dynamical mean-field theory ( LDA + DMFT ) calculations, w...
Based on local-density approximation plus dynamical mean-field theory ( LDA + DMFT ) calculations, w...
We investigate the normal state of the '11' iron-based superconductor FeSe0.42Te0.58 by angle resolv...
We present results of a detailed theoretical study of the electronic, magnetic, and structural prope...
The electronic structure and phase stability of paramagnetic FeSe is computed by using a combination...
Tetragonal FeSe, a prototype iron-chalcogenide superconductor, shows signatures of a strange incoher...
The underlying mechanism of iron-based superconductivity, the role of electron correlations, and the...
Tetragonal FeSe, a prototype iron-chalcogenide superconductor, shows signatures of a strange incoher...
Iron-based chalcogenides are complex superconducting systems in which orbitally-dependent electronic...
Electronic correlation is of fundamental importance to high temperature superconductivity. While the...
Electronic correlation is of fundamental importance to high temperature superconductivity. While the...
Electronic correlation is of fundamental importance to high temperature superconductivity. While the...
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 properti...
Based on local-density approximation plus dynamical mean-field theory ( LDA + DMFT ) calculations, w...
Based on local-density approximation plus dynamical mean-field theory ( LDA + DMFT ) calculations, w...
Based on local-density approximation plus dynamical mean-field theory ( LDA + DMFT ) calculations, w...
We investigate the normal state of the '11' iron-based superconductor FeSe0.42Te0.58 by angle resolv...
We present results of a detailed theoretical study of the electronic, magnetic, and structural prope...
The electronic structure and phase stability of paramagnetic FeSe is computed by using a combination...
Tetragonal FeSe, a prototype iron-chalcogenide superconductor, shows signatures of a strange incoher...
The underlying mechanism of iron-based superconductivity, the role of electron correlations, and the...
Tetragonal FeSe, a prototype iron-chalcogenide superconductor, shows signatures of a strange incoher...
Iron-based chalcogenides are complex superconducting systems in which orbitally-dependent electronic...
Electronic correlation is of fundamental importance to high temperature superconductivity. While the...
Electronic correlation is of fundamental importance to high temperature superconductivity. While the...
Electronic correlation is of fundamental importance to high temperature superconductivity. While the...
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 properti...
Based on local-density approximation plus dynamical mean-field theory ( LDA + DMFT ) calculations, w...
Based on local-density approximation plus dynamical mean-field theory ( LDA + DMFT ) calculations, w...
Based on local-density approximation plus dynamical mean-field theory ( LDA + DMFT ) calculations, w...
We investigate the normal state of the '11' iron-based superconductor FeSe0.42Te0.58 by angle resolv...