Due to the combination of a substantial spin-orbit coupling and correlation effects, iridium oxides hold a prominent place in the search for novel quantum states of matter, including, e.g., Kitaev spin liquids and topological Weyl states. We establish the promise of the very recently synthesized hyper-honeycomb iridate β-Li2IrO3 in this regard. A detailed theoretical analysis reveals the presence of large ferromagnetic first-neighbor Kitaev interactions, while a second-neighbor antiferromagnetic Heisenberg exchange drives the ground state from ferro to zigzag order via a three-dimensional Kitaev spin liquid and an incommensurate phase. Experiment puts the system in the latter regime but the Kitaev spin liquid is very close and reachable by ...
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...
Transition metal oxides are fascinating and complex materials that have puzzled condensed matter phy...
Iridium-based compounds display a rich variety of physical behaviours that stems from the intricate ...
Iridium-based compounds display a rich variety of physical behaviours that stems from the intricate ...
The recently discovered three-dimensional hyperhoneycomb iridate, β-Li2IrO3, has raised hopes for th...
A complex iridium oxide β-Li_{2}IrO_{3} crystallizes in a hyperhoneycomb structure, a three-dimensio...
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...
Magnetic honeycomb iridates are thought to show strongly spin-anisotropic exchange interactions whic...
Magnetic honeycomb iridates are thought to show strongly spin-anisotropic exchange interactions whic...
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...
In this doctoral dissertation, we consider the significance of spin-orbit coupling for the phases of...
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...
Transition metal oxides are fascinating and complex materials that have puzzled condensed matter phy...
Iridium-based compounds display a rich variety of physical behaviours that stems from the intricate ...
Iridium-based compounds display a rich variety of physical behaviours that stems from the intricate ...
The recently discovered three-dimensional hyperhoneycomb iridate, β-Li2IrO3, has raised hopes for th...
A complex iridium oxide β-Li_{2}IrO_{3} crystallizes in a hyperhoneycomb structure, a three-dimensio...
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...
Magnetic honeycomb iridates are thought to show strongly spin-anisotropic exchange interactions whic...
Magnetic honeycomb iridates are thought to show strongly spin-anisotropic exchange interactions whic...
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...
In this doctoral dissertation, we consider the significance of spin-orbit coupling for the phases of...
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...
Transition metal oxides are fascinating and complex materials that have puzzled condensed matter phy...