论文标题
压力引起的范德华(Van der Waals)Ferromagnet VI3的居里温度巨大升高
Pressure-induced huge increase of Curie temperature of the van der Waals ferromagnet VI3
论文作者
论文摘要
据报道,通过测量磁化强度和AC磁敏感性研究了范德华化合物VI3的单晶中磁化的演变。在T1 = 54.5 K,T2 = 53 K,TC = 49.5 K和TFM = 26 K时,有四个磁相跃迁,在环境压力下观察到。前两个归因于特定晶体表面层中铁磁性的发作。大量的铁磁磁性的特征是在Curie温度TC处的磁性顺序转变以及两个不同的铁磁相TFM之间的跃迁,并伴随着冷却后从单斜晶向三层面对称性的结构过渡。用三种独立技术研究了对磁参数的压力影响。发现TC几乎不受高达0.6 GPA的压力影响,而TFM随着压力的增加而迅速增加,并在〜0.85 GPA的三重点达到TC。在较高的压力下,仅观察到一个磁相变向更高的温度,并在7.3 GPa时达到99 K的压力。相反,通过施加压力(在2.5 GPa时超过50%),低温大块磁化大大降低,这表明可能压力诱导的钒磁矩减少。我们根据最近的理论研究讨论了这些结果,以分析交换相互作用并提供如何升高VI3的居里温度。
Evolution of magnetism in single crystals of the van der Waals compound VI3 in external pressure up to 7.3 GPa studied by measuring magnetization and ac magnetic susceptibility is reported. Four magnetic phase transitions, at T1 = 54.5 K, T2 = 53 K, TC = 49.5 K, and TFM = 26 K, respectively have been observed at ambient pressure. The first two have been attributed to the onset of ferromagnetism in specific crystal-surface layers. The bulk ferromagnetism is characterized by the magnetic ordering transition at Curie temperature TC and the transition between two different ferromagnetic phases TFM, accompanied by a structure transition from monoclinic to triclinic symmetry upon cooling. The pressure effects on magnetic parameters were studied with three independent techniques. TC was found to be almost unaffected by pressures up to 0.6 GPa whereas TFM increases rapidly with increasing pressure and reaches TC at a triple point at ~ 0.85 GPa. At higher pressures, only one magnetic phase transition is observed moving to higher temperatures with increasing pressure to reach 99 K at 7.3 GPa. In contrast, the low-temperature bulk magnetization is dramatically reduced by applying pressure (by more than 50% at 2.5 GPa) suggesting a possible pressure-induced reduction of vanadium magnetic moment. We discussed these results in light of recent theoretical studies to analyze exchange interactions and provide how to increase the Curie temperature of VI3.