The Mott insulating perovskite KCuF3 is considered the archetype of an orbitally ordered system. By using the local-density approximation+dynamical mean-field theory method, we investigate the mechanism for orbital ordering in this material. We show that the purely electronic Kugel-Khomskii superexchange mechanism alone leads to a remarkably large transition temperature of T-KK similar to 350 K. However, orbital order is experimentally believed to persist to at least 800 K. Thus, Jahn-Teller distortions are essential for stabilizing orbital order at such high temperatures
High resolution synchrotron radiation X-ray powder diffraction was used to investigate the melting o...
We report on optical measurements of the 1D Heisenberg antiferromagnet KCuF(3). The crystal-field ex...
Ab initio studies of the stability of orbital ordering, its coupling to magnetic structure and its p...
Orbital-ordering phenomena, the periodic arrangement of occupied orbitals in a lattice, play a funda...
The origin of orbital order in correlated transition-metal compounds is strongly debated. For the pa...
Landau theory describes phase transitions as the competition between energy and entropy: The ordered...
The origin of the cooperative Jahn-Teller distortion and orbital order in LaMnO3 is central to the p...
KCuF3 is a Mott-Hubbard insulator with a distorted perovskite structure (space group I4/mcm). The st...
We investigate the origin of the orbital ordering in the paramagnetic phase of KCrF3. All previous s...
Lattice, magnetic and orbital structures in KCuF3 are self-consistently determined by our cluster se...
We show that the t^2_2g perovskite LaVO_3, in its orthorhombic phase, is a rare case of a system hos...
We have investigated the temperature (T)-dependent evolution of orbital states in a typical spin-orb...
The melting of the cooperative Jahn-Teller distortion (cJTd) in KCu1 12xMgxF3 has been studied by hi...
The electronic, magnetic and orbital structures of KCrF3 are determined in all its recently identifi...
We study the origin of the cubic to tetragonal and tetragonal to monoclinic structural transitions i...
High resolution synchrotron radiation X-ray powder diffraction was used to investigate the melting o...
We report on optical measurements of the 1D Heisenberg antiferromagnet KCuF(3). The crystal-field ex...
Ab initio studies of the stability of orbital ordering, its coupling to magnetic structure and its p...
Orbital-ordering phenomena, the periodic arrangement of occupied orbitals in a lattice, play a funda...
The origin of orbital order in correlated transition-metal compounds is strongly debated. For the pa...
Landau theory describes phase transitions as the competition between energy and entropy: The ordered...
The origin of the cooperative Jahn-Teller distortion and orbital order in LaMnO3 is central to the p...
KCuF3 is a Mott-Hubbard insulator with a distorted perovskite structure (space group I4/mcm). The st...
We investigate the origin of the orbital ordering in the paramagnetic phase of KCrF3. All previous s...
Lattice, magnetic and orbital structures in KCuF3 are self-consistently determined by our cluster se...
We show that the t^2_2g perovskite LaVO_3, in its orthorhombic phase, is a rare case of a system hos...
We have investigated the temperature (T)-dependent evolution of orbital states in a typical spin-orb...
The melting of the cooperative Jahn-Teller distortion (cJTd) in KCu1 12xMgxF3 has been studied by hi...
The electronic, magnetic and orbital structures of KCrF3 are determined in all its recently identifi...
We study the origin of the cubic to tetragonal and tetragonal to monoclinic structural transitions i...
High resolution synchrotron radiation X-ray powder diffraction was used to investigate the melting o...
We report on optical measurements of the 1D Heisenberg antiferromagnet KCuF(3). The crystal-field ex...
Ab initio studies of the stability of orbital ordering, its coupling to magnetic structure and its p...