We analyze the magnetic excitations and the spin-mediated superconductivity in iron-based superconductors within a low energy model that operates in the band basis, but fully incorporates the orbital character of the spin excitations. We show how the orbital selectivity, encoded in our low energy description, simplifies substantially the analysis and allows for analytical treatments, while retaining all the main features of both spin excitations and gap functions computed using multiorbital models. Importantly, our analysis unveils the orbital matching between the hole and electron pockets as the key parameter to determine the momentum dependence and the hierarchy of the superconducting gaps, instead of the Fermi surface matching, as in the...
Iron-based superconductors exhibit features of systems where the Fulde Ferrell Larkin Ovchinnikov ph...
There is increasing recognition that the multiorbital nature of the 3 d electrons is important ...
High temperature superconductivity is typically found in the vicinity of a magnetically ordered phas...
[EN] We analyze the magnetic excitations and the spin-mediated superconductivity in iron-based super...
[EN] There is no temperature below absolute zero. Researchers have tried to reach this lower limit a...
We derive the effective action for the collective spin modes in iron-based superconductors. We show ...
We study the orbital-selective superconducting pairing in a five-orbital t-J1-J2 model for iron pnic...
We formulate and study the three-orbital model for iron-based superconductors. Results for the band ...
We consider the spin response within the five-orbital model for iron-based superconductors and study...
The orbital multiplicity in multiband superconductors yields orbital differentiation in normal-state...
Magnetism and nematic order are the two nonsuperconducting orders observed in iron-based superconduc...
FeSe is an intriguing iron-based superconductor. It presents an unusual nematic state without magnet...
FeSe is the focus of intense research interest because of its unusual non-magnetic nematic state and...
We analyze the metallic (π,0) antiferromagnetic state of a five-orbital model for iron superconducto...
In this thesis, we propose that a ferro-orbital order, which breaks the degeneracy between the Fe $d...
Iron-based superconductors exhibit features of systems where the Fulde Ferrell Larkin Ovchinnikov ph...
There is increasing recognition that the multiorbital nature of the 3 d electrons is important ...
High temperature superconductivity is typically found in the vicinity of a magnetically ordered phas...
[EN] We analyze the magnetic excitations and the spin-mediated superconductivity in iron-based super...
[EN] There is no temperature below absolute zero. Researchers have tried to reach this lower limit a...
We derive the effective action for the collective spin modes in iron-based superconductors. We show ...
We study the orbital-selective superconducting pairing in a five-orbital t-J1-J2 model for iron pnic...
We formulate and study the three-orbital model for iron-based superconductors. Results for the band ...
We consider the spin response within the five-orbital model for iron-based superconductors and study...
The orbital multiplicity in multiband superconductors yields orbital differentiation in normal-state...
Magnetism and nematic order are the two nonsuperconducting orders observed in iron-based superconduc...
FeSe is an intriguing iron-based superconductor. It presents an unusual nematic state without magnet...
FeSe is the focus of intense research interest because of its unusual non-magnetic nematic state and...
We analyze the metallic (π,0) antiferromagnetic state of a five-orbital model for iron superconducto...
In this thesis, we propose that a ferro-orbital order, which breaks the degeneracy between the Fe $d...
Iron-based superconductors exhibit features of systems where the Fulde Ferrell Larkin Ovchinnikov ph...
There is increasing recognition that the multiorbital nature of the 3 d electrons is important ...
High temperature superconductivity is typically found in the vicinity of a magnetically ordered phas...