论文标题

各向异性三角晶格系统CECD3AS3中的远程磁顺序

Long-range magnetic order in the anisotropic triangular lattice system CeCd3As3

论文作者

Dunsiger, S. R., Lee, J., Sonier, J. E., Mun, E. D.

论文摘要

我们报告$ r $ cd $ _ {3} $的物理属性为$ _ {3} $($ r $ = la和ce)化合物,结晶成六边形尺度$ _ {3} $ c $ _ {3} $ _ {3} $ - 类型结构($ p $ 6 $ _ {3} $/mmc $ cou,例如$ coubl,格子。磁化率测量表明,CE $^{3+} $离子的4 $ f $电子位置良好,并揭示了较大的磁各向异性。 $ r $ cd $ _ {3} $的电阻率和比热测量值$ _ {3} $在高温下表现出异常($ t_ {0} $ $ $ \ sim $ \ sim $ 63 k for $ r $ = la = la和$ t_ {0} {0} $ \ sim $ \ sim $ \ sim $ \ sim $ 136 k $ r $ = CE) CECD $ _ {3} $作为$ _ {3} $的特定热量测量清楚地表明了$ t_ {n} $ = 0.42 K以下的长距离磁性顺序。尽管磁性对特定热量$ c_ {m}/t $的磁贡献显着增加了$ \ sim $ \ sim $ \ sim $ \ sim $ \ sim $ \ sim $ \ sim $ \ sim $ \ sim $ \ sim $ ceecd $ _ $ _ $ __________3金属行为与Kondo晶格系统不一致。在CECD $ _3 $中,$ _3 $仅$ \ sim $ 40 $ 40 $ \%$ \%$ \ ln(2)$磁熵被$ t_n $恢复,$ r $ ln(2)熵在大约curie-weiss温度$ |θ_{p} | $上完全实现。不寻常的是,基于我们当前的研究,低于$ |θ_{p} | $的磁性特异性并非归因于近托的贡献,而是与三角形晶格上的磁顺序和挫败感有关。应用磁场中的特定热量测量结果显示,对于$ h \ parallel c $,$ t_ {n} $的可忽略的变化可忽略不计,而抑制$ t_ {n} $的抑制作用在40 koe的$ h \ \ h \ parateleAlleAl ab $中被观察到40 koe。这种行为与应用在$ AB $平面内的磁场打破三角形对称性并部分缓解该系统中的磁挫败感是一致的。

We report the physical properties of $R$Cd$_{3}$As$_{3}$ ($R$ = La and Ce) compounds, crystallized into a hexagonal ScAl$_{3}$C$_{3}$-type structure ($P$6$_{3}$/mmc) such that the $R$ sublattice forms a spin-orbit coupled triangular lattice. Magnetic susceptibility measurements indicate the 4$f$ electrons of Ce$^{3+}$ ions are well localized and reveal a large magnetic anisotropy. The electrical resistivity and specific heat measurement for $R$Cd$_{3}$As$_{3}$ exhibit an anomaly at high temperatures ($T_{0}$ $\sim$ 63 K for $R$ = La and $T_{0}$ $\sim$ 136 K for $R$ = Ce), most likely due to a structural transition. Specific heat measurements for CeCd$_{3}$As$_{3}$ clearly indicate a long range magnetic order below $T_{N}$ = 0.42 K. Although the magnetic contribution to the specific heat $C_{m}/T$ increases significantly below $\sim$ 10 K, the electrical resistivity for CeCd$_{3}$As$_{3}$ follows typical, metallic behavior inconsistent with Kondo lattice systems. In CeCd$_3$As$_3$ only $\sim$ 40 $\%$ of the $R \ln(2)$ magnetic entropy is recovered by $T_N$ and the $R$ln(2) entropy is fully achieved at about the Curie-Weiss temperature $|θ_{p}|$. Unusually, based on our current investigations, the magnetic specific heat below $|θ_{p}|$ is not attributed to a Kondo contribution, but rather associated with the magnetic ordering and frustration on the triangular lattice. Specific heat measurements in applied magnetic field show a negligible variation of $T_{N}$ for $H \parallel c$, whereas a suppression of $T_{N}$ is observed above 40 kOe for $H \parallel ab$. Such behavior is consistent with the application a magnetic field within the $ab$-plane breaking the triangular symmetry and partially relieving the magnetic frustration in this system.

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