Yang Z, Drew A J, van Smaalen S, van Well N, Pratt F L, Stenning G B G, Karim A, Rabia K
School of Physics and Astronomy, Queen Mary University of London, 327 Mile End Road, London E1 4NS, United Kingdom.
J Phys Condens Matter. 2020 Jul 15;32(30):305801. doi: 10.1088/1361-648X/ab8425. Epub 2020 Mar 27.
We report multiple magnetic phase transitions and critical behavior of the 2D charge-density wave compound TbTe studied by μSR measurements and dc magnetization measurements. Zero-field μSR has shown three magnetic transitions below 7 K. The longitudinal field measurements under 50 G has confirmed the first transition at T = 6.3 K. Scaling analysis from above T gives the critical exponent w = 0.63(5), suggesting the Ising 3D antiferromagnetic nature of the ordering, which is likely mediated by the 2D correlations. However, the obtained w = 0.81(5) below T indicates the ferromagnetic phase, which arises over the multiphase transitions at lower temperatures. Temperature-dependent transverse frequency shift gives a relatively smaller exponent γ = 1.0(1) than the Ising 3D model. The different transitions were also observed by dc magnetization measurements, suggesting two magnetic transitions at 7.4 K and 3.1 K, which correspond to the antiferromagnetic and ferromagnetic phases respectively.
我们报告了通过μSR测量和直流磁化测量研究的二维电荷密度波化合物TbTe的多个磁相变和临界行为。零场μSR显示在7 K以下有三个磁转变。50 G以下的纵向场测量证实了在T = 6.3 K时的第一个转变。高于T的标度分析给出临界指数w = 0.63(5),表明有序的伊辛三维反铁磁性质,这可能由二维关联介导。然而,在T以下获得的w = 0.81(5)表明铁磁相,它出现在较低温度下的多相转变中。与温度相关的横向频率偏移给出的指数γ = 1.0(1)比伊辛三维模型的相对小。直流磁化测量也观察到了不同的转变,表明在7.4 K和3.1 K处有两个磁转变,分别对应反铁磁相和铁磁相。