The magnetic behavior of Li2MO3 (M=Mn, Ru and Ir) and Li2(Mn1-xRux)O3
arXiv:cond-mat/0111211 · doi:10.1016/S0921-4526(01)01038-9
Abstract
The present study summerizes magnetic and Mossbauer measurements on ceramic Li2MO3 M= Mn, Ru and Ir and the mixed Li2(Mn1-xRux)O3 materials, which show many of the features reflecting to antiferromagnetic ordering or to existence of paramagnetic states. Li2IrO3 and Li2RuO3 are paramagnetic down to 5 K. Li2(Mn1-xRux)O3 compounds are antiferromagnetically ordered at TN = 48 K for x=0. TN decreases as the Ru content increases and, for x=0.8, TN =34 K.
accepted to Physica B
Cited by in corpus (13)
- Kitaev-Heisenberg Model on Honeycomb Lattice: Possible Exotic Phases in Iridium Oxides IrO
- Relevance of the Heisenberg-Kitaev model for the honeycomb lattice iridates A_2IrO_3
- Long range magnetic ordering in NaIrO
- Na2IrO3 as a molecular orbital crystal
- The Challenge of Spin-Orbit-Tuned Ground States in Iridates
- Evolution of Magnetism in Single-Crystal Honeycomb Iridates
- Lattice-Tuned Magnetism of Ru4+(4d4) Ions in Single-Crystals of the Layered Honeycomb Ruthenates: Li2RuO3 and Na2RuO3
- Emergent ultrafast phenomena in correlated oxides and heterostructures
- Strong antiferromagnetic interaction owing to a large trigonal distortion in the spin-orbit-coupled honeycomb lattice iridate CdIrO
- Kitaev magnetism through the prism of lithium iridate
- Tracking local magnetic dynamics via high-energy charge excitations in a relativistic Mott insulator
- Effect of disorder on the dimer transition of the honeycomb-lattice compound LiRuO
- First-order magneto-structural transition in single crystals of the honeycomb lattice Ruthenate LiRuO