A complex iridium oxide β-Li_{2}IrO_{3} crystallizes in a hyperhoneycomb structure, a three-dimensional analogue of honeycomb lattice, and is found to be a spin-orbital Mott insulator with J_{eff}=1/2 moment. Ir ions are connected to the three neighboring Ir ions via Ir-O_{2}-Ir bonding planes, which very likely gives rise to bond-dependent ferromagnetic interactions between the J_{eff}=1/2 moments, an essential ingredient of Kitaev model with a spin liquid ground state. Dominant ferromagnetic interaction between J_{eff}=1/2 moments is indeed confirmed by the temperature dependence of magnetic susceptibility χ(T) which shows a positive Curie-Weiss temperature θ_{CW}∼+40 K. A magnetic ordering with a very small entropy change, likely associ...
We explore the response of Ir 5 d orbitals to pressure in β − Li 2 IrO 3 , a hyperhoney...
We explore the response of Ir 5 d orbitals to pressure in β − Li 2 IrO 3 , a hyperhoney...
The honeycomb iridates A_2IrO_3 (A = Na, Li) constitute promising candidate materials to realize the...
A complex iridium oxide β-Li2IrO3 crystallizes in a hyperhoneycomb structure, a three-dimensional an...
Due to the combination of a substantial spin-orbit coupling and correlation effects, iridium oxides ...
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 layered honeycomb magnet α-Li_{2}IrO_{3} has been theoretically proposed as a candidate to displ...
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...
Iridium oxides with a honeycomb lattice have been identified as platforms for the much anticipated K...
© 2018 American Physical Society. We present a theoretical study of the static and dynamical propert...
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...
Hyperhoneycomb iridate β-Li2IrO3 is a three-dimensional analog of two-dimensional honeycomb iridates...
We explore the response of Ir 5 d orbitals to pressure in β − Li 2 IrO 3 , a hyperhoney...
We explore the response of Ir 5 d orbitals to pressure in β − Li 2 IrO 3 , a hyperhoney...
The honeycomb iridates A_2IrO_3 (A = Na, Li) constitute promising candidate materials to realize the...
A complex iridium oxide β-Li2IrO3 crystallizes in a hyperhoneycomb structure, a three-dimensional an...
Due to the combination of a substantial spin-orbit coupling and correlation effects, iridium oxides ...
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 layered honeycomb magnet α-Li_{2}IrO_{3} has been theoretically proposed as a candidate to displ...
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...
Iridium oxides with a honeycomb lattice have been identified as platforms for the much anticipated K...
© 2018 American Physical Society. We present a theoretical study of the static and dynamical propert...
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...
Hyperhoneycomb iridate β-Li2IrO3 is a three-dimensional analog of two-dimensional honeycomb iridates...
We explore the response of Ir 5 d orbitals to pressure in β − Li 2 IrO 3 , a hyperhoney...
We explore the response of Ir 5 d orbitals to pressure in β − Li 2 IrO 3 , a hyperhoney...
The honeycomb iridates A_2IrO_3 (A = Na, Li) constitute promising candidate materials to realize the...