We uncover the low-energy spectrum of a t-J model for electrons on a square lattice of spin-1 iron atoms with 3dxz and 3dyz orbital character by applying Schwinger-boson-slave-fermion mean-field theory and by exact diagonalization of one hole roaming over a 4 × 4 × 2 lattice. Hopping matrix elements are set to produce hole bands centered at zero two-dimensional (2D) momentum in the free-electron limit. Holes can propagate coherently in the t-J model below a threshold Hund coupling when long-range antiferromagnetic order across the d + = 3d(x + iy)z and d − = 3d(x − iy)z orbitals is established by magnetic frustration that is off-diagonal in the orbital indices. This leads to two hole-pocket Fermi surfaces centered at zero 2D momentum. Proxi...
We formulate and study the three-orbital model for iron-based superconductors. Results for the band ...
We study the single-particle spectral properties of electrons coupled to quasicritical charge and sp...
We use high-resolution angle-resolved photoemission spectroscopy to map the three-dimensional moment...
We uncover the low-energy spectrum of a t-J model for electrons on a square lattice of spin-1 iron a...
A two-orbital t-J model over the square lattice that describes low-energy electronic excitations in ...
The nesting of electron Fermi pocket with one of the two hole pockets around the Brillouin zone cent...
[EN] We analyze the magnetic excitations and the spin-mediated superconductivity in iron-based super...
The underlying Fermi surface is a key concept for strongly interacting electron models and has been ...
We investigate electronic states of the one-dimensional two-orbital Hubbard model with band splittin...
We investigate electronic states of the one-dimensional two-orbital Hubbard model with band splittin...
We study the t-J model as a microscopic model of high-temperature superconductors. The local constra...
Monte Carlo simulations applied to a model of interacting fermions and classical spins show the exis...
Superconductivity in iron pnictides is studied by using a two-orbital Hubbard model in the large U l...
In view of the recent experimental facts in the iron-pnictides, we make a proposal that the itineran...
Motivated by the close correlation between transition temperature (T-c) and the tetrahedral bond ang...
We formulate and study the three-orbital model for iron-based superconductors. Results for the band ...
We study the single-particle spectral properties of electrons coupled to quasicritical charge and sp...
We use high-resolution angle-resolved photoemission spectroscopy to map the three-dimensional moment...
We uncover the low-energy spectrum of a t-J model for electrons on a square lattice of spin-1 iron a...
A two-orbital t-J model over the square lattice that describes low-energy electronic excitations in ...
The nesting of electron Fermi pocket with one of the two hole pockets around the Brillouin zone cent...
[EN] We analyze the magnetic excitations and the spin-mediated superconductivity in iron-based super...
The underlying Fermi surface is a key concept for strongly interacting electron models and has been ...
We investigate electronic states of the one-dimensional two-orbital Hubbard model with band splittin...
We investigate electronic states of the one-dimensional two-orbital Hubbard model with band splittin...
We study the t-J model as a microscopic model of high-temperature superconductors. The local constra...
Monte Carlo simulations applied to a model of interacting fermions and classical spins show the exis...
Superconductivity in iron pnictides is studied by using a two-orbital Hubbard model in the large U l...
In view of the recent experimental facts in the iron-pnictides, we make a proposal that the itineran...
Motivated by the close correlation between transition temperature (T-c) and the tetrahedral bond ang...
We formulate and study the three-orbital model for iron-based superconductors. Results for the band ...
We study the single-particle spectral properties of electrons coupled to quasicritical charge and sp...
We use high-resolution angle-resolved photoemission spectroscopy to map the three-dimensional moment...