Collective excitations in the tetravalent lanthanide honeycomb antiferromagnet, Na2PrO3
arXiv:2010.06741 · doi:10.1103/PhysRevB.103.L121109
Abstract
Thermomagnetic and inelastic neutron scattering measurements on Na2PrO3 are reported. This material is an antiferromagnetic honeycomb magnet based on the tetravalent lanthanide Pr4+ and has been proposed to host dominant antiferromagnetic Kitaev interactions. These measurements reveal magnetic fluctuations in Na2PrO3 below an energy of 2 meV as well as crystal-field excitations around 230 meV. The latter energy is comparable to the scale of the spin-orbit interaction and explains both the very small effective moment of around 1.0 μB per Pr4+ and the difficulty to uncover any static magnetic scattering below the ordering transition at TN = 4.6 K. By comparing the low-energy magnetic excitations in Na2PrO3 to that of the isostructural spin-only compound, Na2TbO3, a microscopic model of exchange interactions is developed that implicates dominant and surprisingly large Heisenberg exchange interactions J approximately equal to 1.1(1) meV. Although antiferromagnetic Kitaev interactions with K less than or equal to 0.2J cannot be excluded, the inelastic neutron scattering data of Na2PrO3 is best explained with a delta = 1.24(2) easy-axis XXZ exchange anisotropy.
5 pages, 3 figures; Supplementary Information available on request
References in corpus (9)
- Mantid - Data Analysis and Visualization Package for Neutron Scattering and Experiments
- On the Origin of Zigzag Magnetic Order in Iridium Oxide Na2IrO3
- Continuous excitations of the triangular-lattice quantum spin liquid YbMgGaO4
- Hyper-honeycomb iridate -Li2IrO3 as a platform for Kitaev magnetism
- Pseudospin exchange interactions in d^7 cobalt compounds: Possible realization of the Kitaev model
- Kitaev-Heisenberg Hamiltonian for High-Spin Mott Insulators
- Kitaev materials beyond iridates: order by quantum disorder and Weyl magnons in rare-earth double perovskites
- A perturbative approach to J mixing in f-electron systems: Application to actinide dioxides
- Energy scales in 4f1 delafossite magnets: crystal-field splittings larger than the strength of spin-orbit coupling in KCeO2
Cited by in corpus (16)
- Chemical Design of Electronic and Magnetic Energy Scales in Tetravalent Praseodymium
- Ln2(SeO3)2(SO4)(H2O)2 (Ln = Sm, Dy, Yb): A Mixed-Ligand Pathway to New Lathanide (III) Multifunctional Materials Featuring Nonlinear Optical and Magnetic Anisotropy Properties
- Ground-state phase diagram of spin- Kitaev-Heisenberg models
- SmI3: 4f5 honeycomb magnet with spin-orbital entangled Γ7 Kramers doublet
- Ground-State Phase Diagram of the Kitaev-Heisenberg Model on a Three-dimensional Hyperhoneycomb Lattice
- = 1/2 Hyperoctagon Lattice in Cobalt Oxalate Metal-Organic-Framework
- Exploring rare-earth Kitaev magnets by massive-scale computational analysis
- Crystal-field effects competing with spin-orbit interactions in NaCeO
- Unraveling the magnetic ground-state in alkali-metal lanthanide oxide NaPrO
- Topological paramagnetic excitons of localized f electrons on the honeycomb lattice
- Exchange Interactions in Rare-earth Magnets PrO (= alkali metals): Revisited
- Topological Majorana flat bands in the Kitaev model on a Bishamon-kikko lattice
- Magnetocalorics of singlet ground state induced moment magnets
- Derivation of low-energy Hamiltonians for heavy-fermion Materials
- Magnetic field effects on the Kitaev model coupled to environment
- Crystalline water intercalation into the Kitaev honeycomb cobaltate NaCoTeO