We study the dc conductivity of iron-based superconductors within the orbital-selective spin fluctuation scenario. Within this approach, the anisotropy of spin fluctuations below the spin-nematic transition at TS is also responsible for the orbital ordering, induced by nematic self-energy corrections to the quasiparticle dispersion. As a consequence, the anisotropy of the dc conductivity below TS is determined not only by the anisotropy of the scattering rates as expected within a spin-nematic scenario, but also by the modification of the Fermi velocity due to the orbital reconstruction. More interestingly, it turns out that these two effects contribute to the dc-conductivity anisotropy with opposite signs. By using realistic band-structure...
In iron-based superconductors the interactions driving the nematic order (that breaks four-fold rota...
Nematic fluctuations occur in a wide range physical systems from biological molecules to cuprates an...
The theoretical understanding of the nematic state of iron-based superconductors and especially of F...
[EN] We study the dc conductivity of iron-based superconductors within the orbital-selective spin fl...
The emergence of nematic electronic states which break the symmetry of the underlying lattice is a r...
FeSe is an intriguing iron-based superconductor. It presents an unusual nematic state without magnet...
We derive the effective action for the collective spin modes in iron-based superconductors. We show ...
The origin of the electronic nematicity and its remarkable material dependence are famous longstandi...
The in-plane resistivity anisotropy is studied in strain-detwinned single crystals of FeSe. In contr...
The origin of the anisotropy in physical quantities related to a symmetry-broken (nematic) electroni...
The origin of anisotropic transport in the nematic phase of the iron-based superconductors is still ...
Most parent compounds of iron-based superconductors (FeSCs) exhibit a tetragonal-to-orthorhombic lat...
Isoelectronic substitution is an ideal tuning parameter to alter electronic states and correlations ...
The interplay of orbital and spin degrees of freedom is the fundamental characteristic in numerous c...
[EN] There is no temperature below absolute zero. Researchers have tried to reach this lower limit a...
In iron-based superconductors the interactions driving the nematic order (that breaks four-fold rota...
Nematic fluctuations occur in a wide range physical systems from biological molecules to cuprates an...
The theoretical understanding of the nematic state of iron-based superconductors and especially of F...
[EN] We study the dc conductivity of iron-based superconductors within the orbital-selective spin fl...
The emergence of nematic electronic states which break the symmetry of the underlying lattice is a r...
FeSe is an intriguing iron-based superconductor. It presents an unusual nematic state without magnet...
We derive the effective action for the collective spin modes in iron-based superconductors. We show ...
The origin of the electronic nematicity and its remarkable material dependence are famous longstandi...
The in-plane resistivity anisotropy is studied in strain-detwinned single crystals of FeSe. In contr...
The origin of the anisotropy in physical quantities related to a symmetry-broken (nematic) electroni...
The origin of anisotropic transport in the nematic phase of the iron-based superconductors is still ...
Most parent compounds of iron-based superconductors (FeSCs) exhibit a tetragonal-to-orthorhombic lat...
Isoelectronic substitution is an ideal tuning parameter to alter electronic states and correlations ...
The interplay of orbital and spin degrees of freedom is the fundamental characteristic in numerous c...
[EN] There is no temperature below absolute zero. Researchers have tried to reach this lower limit a...
In iron-based superconductors the interactions driving the nematic order (that breaks four-fold rota...
Nematic fluctuations occur in a wide range physical systems from biological molecules to cuprates an...
The theoretical understanding of the nematic state of iron-based superconductors and especially of F...