Magnetic Ordering in GdAuAlGe and TbAuAlGe: layered compounds with triangular lanthanide nets
arXiv:2205.14063 · doi:10.1016/j.jmmm.2022.170006
Abstract
We report the synthesis of the entire AuAlGe ( = Y, Pr, Nd, Sm, Gd, Tb, Dy, Ho, Er, and Tm) series and focus on the magnetic properties of GdAuAlGe and TbAuAlGe. Temperature and magnetic field dependent magnetization, heat capacity, and electrical resistivity measurements reveal that both compounds exhibit several magnetically ordered states at low temperatures, with evidence for magnetic fluctuations extending into the paramagnetic temperature region. For magnetic fields applied in the -plane there are several ordered state regions that are associated with metamagnetic phase transitions, consistent with there being multiple nearly degenerate ground states. Despite Gd being an isotropic -state ion and Tb having an anisotropic -state, there are similarities in the phase diagrams for the two compounds, suggesting that factors such as the symmetry of the crystalline lattice, which features well separated triangular planes of lanthanide ions, or the Ruderman-Kittel-Kasuya-Yosida interaction as defined by the Fermi surface topography control the magnetism. We also point out similarities to other centrosymmetric compounds that host skyrmion lattices such as GdPdSi, and propose that the AuAlGe family of compounds are of interest as reservoirs for complex magnetism and electronic behaviors such as the topological Hall effect.
10 pages, 11 figures
References in corpus (6)
- Higher-order topological insulators and semimetals on the breathing Kagome and pyrochlore lattices
- Nanometric square skyrmion lattice in a centrosymmetric tetragonal magnet
- Antiferromagnetic skyrmion crystals: generation, topological Hall and topological spin Hall effect
- Magnetic and transport anomalies in R2RhSi3 (R= Gd, Tb, and Dy), resembling those of an exotic magnetic skyrmion Gd2PdSi3
- Topical Review on Skyrmions and Hall Transport
- Electronic Structure and Magnetism in the Layered Triangular Lattice Compound CeAuAlGe
Cited by in corpus (4)
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- Magnetic phase diagram and multiple field-induced states in the intermetallic triangular-lattice antiferromagnet NdAuAlGe with Ising-like spins
- Metallic layered materials with magnetic frustration: An ARPES view of the SmAuAlGe and TbAuAlGe
- Anisotropic magnetism of polymorphic ErAl3