论文标题
gdaual中的磁性顺序
Magnetic Ordering in GdAuAl$_4$Ge$_2$ and TbAuAl$_4$Ge$_2$: layered compounds with triangular lanthanide nets
论文作者
论文摘要
我们报告了整个$ ln $ aual $ _4 $ ge $ _2 $($ ln $ = y,pr,nd,sm,sm,gd,gd,tb,dy,ho,ho,er和tm)系列的合成,并关注GDAUAL $ _4 $ ge $ _2 $ _2 $ and tbaual $ _4 $ _4 $ _4 $ ge $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $。温度和磁场依赖性磁化,热容量和电阻率测量表明,两种化合物在低温下均表现出几种磁有序状态,并且有证据表明磁性波动延伸到顺磁温度区域。对于在$ AB $平面中应用的磁场,有几个有序的状态区域与元磁相变相关,这与存在多个近乎退化的基态。 Despite Gd being an isotropic $S$-state ion and Tb having an anisotropic $J$-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费米表面地形控制着磁性。我们还指出了与其他具有Skyrmion lattices(例如GD $ _2 $ _2 $ PDSI $ _3 $)的相似之处,并提出$ ln $ aual $ _4 $ _4 $ ge $ _2 $的化合物家族对复杂的磁性磁性和电子行为行为的储层很感兴趣。
We report the synthesis of the entire $Ln$AuAl$_4$Ge$_2$ ($Ln$ = Y, Pr, Nd, Sm, Gd, Tb, Dy, Ho, Er, and Tm) series and focus on the magnetic properties of GdAuAl$_4$Ge$_2$ and TbAuAl$_4$Ge$_2$. 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 $ab$-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 $S$-state ion and Tb having an anisotropic $J$-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 Gd$_2$PdSi$_3$, and propose that the $Ln$AuAl$_4$Ge$_2$ family of compounds are of interest as reservoirs for complex magnetism and electronic behaviors such as the topological Hall effect.