论文标题
UI $ _3 $ - 5F-电子磁性Van der Waals材料
UI$_3$ -- 5f-electron magnetic van der Waals material
论文作者
论文摘要
我们生长了5F电子范德华化合物UI $ _3 $的高质量单晶,并通过测量特定的热量和磁化为温度和磁场的功能来研究它们。 UI $ _3 $作为抗铁磁铁的表现,在Neél温度下具有一阶磁相变,$ t_n $ = 2.65 k。它的特征是尖锐的对称特异性热峰逐渐通过沿A-或B轴施加的磁场逐渐转移到较低的温度。磁场中的行为揭示了沿C轴的硬磁化方向的正交磁晶的各向异性。 2-K A-和B轴磁化曲线分别在临界场$ H_C $ = 3 T和1.8 T显示了元磁过渡。在较高的场中,当跨磁管迁移抑制远距离抗铁磁性时,顺磁性状态下抗铁磁相关性的短距离磁有序的迹象在特定的热量和磁化中都显示出来。 A轴磁化强度的异常S形场依赖性远高于$ h_c $,可以理解为从相关的磁磁制度到高场极化Paramagnet的交叉。提出了沿着提到的实验结果设计的磁场的磁相图分别沿A和B轴应用。我们还发现,UI $ _3 $晶体很容易切割,这使该材料容易地在2D限制的原子薄样品中直接研究5F电子磁性。
We grew high-quality single crystals of the 5f electron van der Waals compound UI$_3$ and investigated them by measurements of specific heat and magnetization as functions of temperature and magnetic field. UI$_3$ behaves as an antiferromagnet with a first-order magnetic phase transition at the Neél temperature $T_N$ = 2.65 K. It is characterized by a sharp symmetric specific-heat peak which is gradually shifted to lower temperatures by increasing magnetic field applied along either the a- or b-axis. The behavior in magnetic fields reveals orthorhombic magnetocrystalline anisotropy with the hard magnetization direction along the c-axis. The 2-K a- and b-axis magnetization curves exhibit a metamagnetic transition at the critical field $H_c$ = 3 T and 1.8 T, respectively. In higher fields, when the long-range antiferromagnetism is suppressed by a metamagnetic transition, signs of short-range magnetic ordering of antiferromagnetic correlations in the paramagnetic state show up both in specific heat and magnetization. The anomalous S-shape field dependence of a-axis magnetization well above $H_c$ can be understood as the crossover from the correlated paramagnetic regime to the high-field polarized paramagnet. The magnetic phase diagrams for the magnetic field applied along the a- and b-axis, respectively, designed using the mentioned experimental results are presented. We have also found that the UI$_3$ crystals are easily cleavable which predisposes this material for direct investigation of 5f electron magnetism in the 2D limit on exfoliated atomically thin samples.