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Thermal Expansion and Magnetostriction of Laves-Phase Alloys: Fingerprints of Ferrimagnetic Phase Transitions

机译:Laves相合金的热膨胀和磁致伸缩:亚铁磁性相变的指纹

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摘要

The magneto–elastic coupling effect correlates to the changes of moment and lattice upon magnetic phase transition. Here, we report that, in the pseudo-binary Laves-phase Tb1-xDyxCo2 system (x = 0.0, 0.7, and 1.0), thermal expansion and magnetostriction can probe the ferrimagnetic transitions from cubic to rhombohedral phase (in TbCo2), from cubic to tetragonal phase (in DyCo2), and from cubic to rhombohedral then to tetragonal phase (in Tb0.3Dy0.7Co2). Furthermore, a Landau polynomial approach is employed to qualitatively investigate the thermal expansion upon the paramagnetic (cubic) to ferrimagnetic (rhombohedral or tetragonal) transition, and the calculated thermal expansion curves agree with the experimental curves. Our work illustrates the correlation between crystal symmetry, magnetostriction, and thermal expansion in ferrimagnetic Laves-phase alloys and provides a new perspective to investigate ferrimagnetic transitions.
机译:磁弹耦合效应与磁相变时的矩和晶格变化有关。在这里,我们报告说,在伪二元Laves相Tb1-xDyxCo2系统(x = 0.0、0.7和1.0)中,热膨胀和磁致伸缩可以探测从立方到菱面体相(在TbCo2中)的亚铁磁跃迁。到四方相(在DyCo2中),然后从立方到菱面体再到四方相(在Tb0.3Dy0.7Co2中)。此外,采用Landau多项式方法定性研究了顺磁(立方)到亚铁磁(菱形或四方)转变时的热膨胀,计算出的热膨胀曲线与实验曲线一致。我们的工作说明了铁磁性Laves相合金中晶体对称性,磁致伸缩和热膨胀之间的相关性,并为研究铁磁性转变提供了新的视角。

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