Single-crystal x-ray diffraction studies with synchrotron radiation on the honeycomb iridate alpha-Li2IrO3 reveal a pressure-induced structural phase transition with symmetry lowering from monoclinic to triclinic at a critical pressure of P-c = 3.8 GPa. According to the evolution of the lattice parameters with pressure, the transition mainly affects the ab plane and thereby the Ir hexagon network, leading to the formation of Ir-Ir dimers. These observations are independently predicted and corroborated by our ab initio density functional theory calculations where we find that the appearance of Ir-Ir dimers at finite pressure is a consequence of a subtle interplay between magnetism, correlation, spin-orbit coupling, and covalent bonding. Our ...
The honeycomb lattice material Li2RuO3 undergoes a dimerization of Ru4+ cations on cooling below 270...
We present magnetization measurements carried out on polycrystalline and single-crystalline samples ...
Honeycomb-lattice quantum magnets with strong spin-orbit coupling are promising candidates for reali...
Iridium oxides with a honeycomb lattice have been identified as platforms for the much anticipated K...
Hyperhoneycomb iridate β-Li2IrO3 is a three-dimensional analog of two-dimensional honeycomb iridates...
Iridium oxides with a honeycomb lattice have been identified as platforms for the much anticipated K...
Hyperhoneycomb iridate β-Li2IrO3 is a three-dimensional analog of two-dimensional honeycomb iridates...
Iridium oxides with a honeycomb lattice have been identified as platforms for the much anticipated K...
Iridium oxides with a honeycomb lattice have been identified as platforms for the much anticipated K...
Honeycomb iridates such as γ-Li2IrO3 are argued to realize Kitaev spin-anisotropic magnetic exchange...
Iridium oxides with a honeycomb lattice have been identified as platforms for the much anticipated K...
Iridium oxides with a honeycomb lattice have been identified as platforms for the much anticipated K...
Honeycomb iridates such as γ-Li2IrO3 are argued to realize Kitaev spin-anisotropic magnetic exchange...
We explore the response of Ir 5d orbitals to pressure in $\beta$−Li$_{2}$IrO$_{3}$, a hyperhoneycomb...
We use powder x-ray diffraction to study the effect of pressure on the crystal structure of the hone...
The honeycomb lattice material Li2RuO3 undergoes a dimerization of Ru4+ cations on cooling below 270...
We present magnetization measurements carried out on polycrystalline and single-crystalline samples ...
Honeycomb-lattice quantum magnets with strong spin-orbit coupling are promising candidates for reali...
Iridium oxides with a honeycomb lattice have been identified as platforms for the much anticipated K...
Hyperhoneycomb iridate β-Li2IrO3 is a three-dimensional analog of two-dimensional honeycomb iridates...
Iridium oxides with a honeycomb lattice have been identified as platforms for the much anticipated K...
Hyperhoneycomb iridate β-Li2IrO3 is a three-dimensional analog of two-dimensional honeycomb iridates...
Iridium oxides with a honeycomb lattice have been identified as platforms for the much anticipated K...
Iridium oxides with a honeycomb lattice have been identified as platforms for the much anticipated K...
Honeycomb iridates such as γ-Li2IrO3 are argued to realize Kitaev spin-anisotropic magnetic exchange...
Iridium oxides with a honeycomb lattice have been identified as platforms for the much anticipated K...
Iridium oxides with a honeycomb lattice have been identified as platforms for the much anticipated K...
Honeycomb iridates such as γ-Li2IrO3 are argued to realize Kitaev spin-anisotropic magnetic exchange...
We explore the response of Ir 5d orbitals to pressure in $\beta$−Li$_{2}$IrO$_{3}$, a hyperhoneycomb...
We use powder x-ray diffraction to study the effect of pressure on the crystal structure of the hone...
The honeycomb lattice material Li2RuO3 undergoes a dimerization of Ru4+ cations on cooling below 270...
We present magnetization measurements carried out on polycrystalline and single-crystalline samples ...
Honeycomb-lattice quantum magnets with strong spin-orbit coupling are promising candidates for reali...