论文标题

交织的非典型量子状态在celibi $ _2 $

Interwoven atypical quantum states in CeLiBi$_2$

论文作者

Bordelon, Mitchell M., Girod, Clément, Ronning, Filip, Rubi, Km, Harrison, Neil, Thompson, Joe D., Cruz, Clarina dela, Thomas, Sean M., Bauer, Eric D., Rosa, Priscila F. S.

论文摘要

我们报告了Celibi $ _2 $的发现,这是四方CE $ TX_2 $($ t $ =过渡金属; $ x $ = pnictogen)家族的第一个示例,其中碱阳离子代替了典型的过渡金属。 Magnetic susceptibility and neutron powder diffraction measurements are consistent with a crystal-field $Γ_6$ ground state Kramers doublet that orders antiferromagnetically below $T_N = 3.4$ K with an incommensurate propagation wave vector ${\bf{k}} = (0, 0.0724(4), 0.5)$ that generates a nanometric modulation of the magnetic structure.有序状态的最佳模型是一个椭圆形的循环,其CE矩主要居住在$ ab $飞机上。这是非常不寻常的,因为所有其他$γ_6$ CE $ TX_2 $成员在Ferromagnet上订购。此外,我们观察到一个非典型的硬轴元磁过渡,磁磁,磁化和电阻率测量值$ 2 $ t。 Celibi $ _2 $是一种极少数导电材料的罕见例子,具有占主导地位的偏斜散射,从而产生了较大的异常效果。具有五个频率的量子振荡在磁截图和磁化易感性数据中出现为$ t = 30 $ k和$μ_0H= 55 $ t,这表明小费米的轻质载体的有效质量低至0.07 $ m_e $。密度函数理论计算表明,方形狄拉克(Dirac)的BI $ -P $ bands负责这些超级载体。总之,我们的结果表明,Celibi $ _2 $在单个清洁材料中启用了多种非典型磁性和电子特性。

We report the discovery of CeLiBi$_2$, the first example of a material in the tetragonal Ce$TX_2$ ($T$ = transition metal; $X$ = pnictogen) family wherein an alkali cation replaces the typical transition metal. Magnetic susceptibility and neutron powder diffraction measurements are consistent with a crystal-field $Γ_6$ ground state Kramers doublet that orders antiferromagnetically below $T_N = 3.4$ K with an incommensurate propagation wave vector ${\bf{k}} = (0, 0.0724(4), 0.5)$ that generates a nanometric modulation of the magnetic structure. The best model of the ordered state is an elliptical cycloid with Ce moments primarily residing in the $ab$ plane. This is highly unusual, as all other $Γ_6$ Ce$TX_2$ members order ferromagnetically. Further, we observe an atypical hard-axis metamagnetic transition at $2$ T in magnetostriction, magnetization, and resistivity measurements. CeLiBi$_2$ is a rare example of a highly conductive material with dominant skew scattering leading to a large anomalous Hall effect. Quantum oscillations with five frequencies arise in magnetostriction and magnetic susceptibility data to $T = 30$ K and $μ_0H = 55$ T, which indicate small Fermi pockets of light carriers with effective masses as low as 0.07$m_e$. Density functional theory calculations indicate that square-net Dirac-like Bi$-p$ bands are responsible for these ultralight carriers. Together, our results show that CeLiBi$_2$ enables multiple atypical magnetic and electronic properties in a single clean material.

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