We compute the two-fluid resistivity of a compressed FeSe superconductor, treating electronic correlations within density functional dynamical mean-field theory. Results for the emergent strange and bad metal behavior shows good theory-experiment agreement within the mixed tetragonal and pseudohexagonal structural phases at pressures around 8.1 GPa. Our findings call for more studies on unconventional high-temperature (high-Tc) superconductors to unearth the consequences of selective Mott localization as the prominent candidate in governing their strange, T-linear resistivity
We report on muon spin rotation experiments probing the magnetic penetration depth λ(T) in the layer...
Pressure is a powerful tool to study iron-based superconductors. Here, we report systematic high-pre...
We have investigated the effect of Fe nonstoichiometry on properties of the Fe1+y(Te,Se) superconduc...
We compute the two-fluid resistivity of a compressed FeSe superconductor, treating electronic correl...
Tetragonal FeSe, a prototype iron-chalcogenide superconductor, shows signatures of a strange incoher...
In Physics, one of the current hot research related to material for energy storage problem is findin...
The iron-based superconductor FeSe offers a unique possibility to study the interplay of superconduc...
The nature of the anomalous metal, one of the quantum ground states of two-dimensional (2D) bosonic ...
Based on local-density approximation plus dynamical mean-field theory ( LDA + DMFT ) calculations, w...
A general understanding of the mechanism underlying the pressure-induced Mott insulator-metal transi...
Superconductivity in FeSe is strongly enhanced under applied pressure and it is proposed to emerge f...
We present results of a detailed theoretical study of the electronic, magnetic, and structural prope...
The coexistence and competition between superconductivity and electronic orders, such as spin or cha...
We report first-principles density-functional theory results on the electronic and magnetic properti...
Due to the simple layered structure, isostructural FeSe and FeSe0.5Te0.5 are clue compounds for unde...
We report on muon spin rotation experiments probing the magnetic penetration depth λ(T) in the layer...
Pressure is a powerful tool to study iron-based superconductors. Here, we report systematic high-pre...
We have investigated the effect of Fe nonstoichiometry on properties of the Fe1+y(Te,Se) superconduc...
We compute the two-fluid resistivity of a compressed FeSe superconductor, treating electronic correl...
Tetragonal FeSe, a prototype iron-chalcogenide superconductor, shows signatures of a strange incoher...
In Physics, one of the current hot research related to material for energy storage problem is findin...
The iron-based superconductor FeSe offers a unique possibility to study the interplay of superconduc...
The nature of the anomalous metal, one of the quantum ground states of two-dimensional (2D) bosonic ...
Based on local-density approximation plus dynamical mean-field theory ( LDA + DMFT ) calculations, w...
A general understanding of the mechanism underlying the pressure-induced Mott insulator-metal transi...
Superconductivity in FeSe is strongly enhanced under applied pressure and it is proposed to emerge f...
We present results of a detailed theoretical study of the electronic, magnetic, and structural prope...
The coexistence and competition between superconductivity and electronic orders, such as spin or cha...
We report first-principles density-functional theory results on the electronic and magnetic properti...
Due to the simple layered structure, isostructural FeSe and FeSe0.5Te0.5 are clue compounds for unde...
We report on muon spin rotation experiments probing the magnetic penetration depth λ(T) in the layer...
Pressure is a powerful tool to study iron-based superconductors. Here, we report systematic high-pre...
We have investigated the effect of Fe nonstoichiometry on properties of the Fe1+y(Te,Se) superconduc...