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Magnetic anisotropy unusual hysteresis and putative up-up-down magnetic structure in EuTAl4Si2 (T = Rh and Ir)

机译:EuTAl4Si2中的磁各向异性异常磁滞和假定的上-下-下磁结构(T = Rh和Ir)

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摘要

We present detailed investigations on single crystals of quaternary EuRhAl4Si2 and EuIrAl4Si2. The two compounds order antiferromagnetically at TN1 = 11.7 and 14.7 K, respectively, each undergoing two magnetic transitions. The magnetic properties in the ordered state present a large anisotropy despite Eu2+being an S-state ion for which the single-ion anisotropy is expected to be weak. Two features in the magnetization measured along the c-axis are prominent. At 1.8 K, a ferromagnetic-like jump occurs at very low field to a value one third of the saturation magnetization (1/3 M0) followed by a wide plateau up to 2 T for Rh and 4 T for Ir-compound. At this field value, a sharp hysteretic spin-flop transition occurs to a fully saturated state (M0). Surprisingly, the magnetization does not return to origin when the field is reduced to zero in the return cycle, as expected in an antiferromagnet. Instead, a remnant magnetization 1/3 M0 is observed and the magnetic loop around the origin shows hysteresis. This suggests that the zero field magnetic structure has a ferromagnetic component, and we present a model with up to third neighbor exchange and dipolar interaction which reproduces the magnetization curves and hints to an “up-up-down” magnetic structure in zero field.
机译:我们目前对四元EuRhAl4Si2和EuIrAl4Si2单晶进行详细研究。两种化合物分别在TN1 = 11.7和14.7 K时反铁磁化,分别经历两个磁跃迁。尽管Eu 2 + 是单离子各向异性弱的S状态离子,但有序态的磁性能却表现出较大的各向异性。沿c轴测量的磁化强度有两个特征。在1.8 K处,在非常低的磁场中会发生类似铁磁的跃变,达到饱和磁化强度(1/3 M0)的三分之一,然后出现一个宽平稳期,Rh高达2 T,Ir化合物高达4T。在该场值下,急剧的磁滞旋转过渡发生到完全饱和状态(M0)。出人意料的是,如反铁磁体所预期的那样,当磁场在返回周期中减小到零时,磁化不会恢复原点。相反,观察到剩余磁化强度为1/3 M0,并且原点周围的磁环显示出磁滞现象。这表明零磁场磁性结构具有铁磁成分,并且我们提出了具有多达第三邻域交换和偶极相互作用的模型,该模型再现了磁化曲线并暗示了零磁场中的“上下”磁性结构。

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