Low-energy spin dynamics in rare-earth perovskite oxides
arXiv:2106.08378 · doi:10.1088/1361-648X/ac1367
Abstract
We review recent studies of spin dynamics in rare-earth orthorhombic perovskite oxides of the type O, where is a rare-earth ion and is a transition-metal ion, using single-crystal inelastic neutron scattering (INS). After a short introduction to the magnetic INS technique in general, the results of INS experiments on both transition-metal and rare-earth subsystems for four selected compounds (YbFeO, TmFeO, YFeO, YbAlO) are presented. We show that the spectrum of magnetic excitations consists of two types of collective modes that are well separated in energy: gapped magnons with a typical bandwidth of 70 meV, associated with the antiferromagnetically (AFM) ordered transition-metal subsystem, and AFM fluctuations of 5 meV within the rare-earth subsystem, with no hybridization of those modes. We discuss the high-energy conventional magnon excitations of the 3 subsystem only briefly, and focus in more detail on the spectacular dynamics of the rare-earth sublattice in these materials. We observe that the nature of the ground state and the low-energy excitation strongly depends on the identity of the rare-earth ion. In the case of non-Kramers ions, the low-symmetry crystal field completely eliminates the degeneracy of the multiplet state, creating a rich magnetic field-temperature phase diagram. In the case of Kramers ions, the resulting ground state is at least a doublet, which can be viewed as an effective quantum spin-1/2. Equally important is the fact that in Yb-based materials the nearest-neighbor exchange interaction dominates in one direction, despite the three-dimensional nature of the orthoperovskite crystal structure. The observation of a fractional spinon continuum and quantum criticality in YbAlO demonstrates that Kramers rare-earth based magnets can provide realizations of various aspects of quantum low-dimensional physics.
Topical review. 29 pages, 24 figures
References in corpus (14)
- Mantid - Data Analysis and Visualization Package for Neutron Scattering and Experiments
- The ALPS project release 1.3: open source software for strongly correlated systems
- Observation of spin current in quantum spin liquid
- Recent Progress of Multiferroic Perovskite Manganites
- Quantum spin transistor with a Heisenberg spin chain
- Tomonaga-Luttinger Liquid Behavior and Spinon Confinement in YbAlO
- The Cold Neutron Chopper Spectrometer at the Spallation Neutron Source - A Review of the first 8 Years of Operation
- Longitudinal SDW order in a quasi-1D Ising-like quantum antiferromagnet
- Magnetic ground state of the Ising-like antiferromagnet DyScO
- Amplitude Mode in Quantum Magnets via Dimensional Crossover
- Antiferromagnetic ordering and dipolar interactions of YbAlO
- Neutron inelastic scattering study of rare-earth orthoferrite HoFeO
- Experimental observation of magnetic dimers in diluted Yb:YAlO
- Field-induced incommensurate ordering in the Heisenberg chains coupled by Ising interaction: Model for the ytterbium aluminum perovskite YbAlO
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- Dynamic Competition Between Hubbard and Superexchange Interactions Selectively Localizes Electrons and Holes Through Polarons
- Competition Between Multiferroic and Magnetic Soliton Lattice States in DyFeO
- Magnetic excitation spectrum and hierarchy of magnetic interactions in ErFeO3