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Phase-field simulation of magnetic microstructure and domain switching in (Tb0.27Dy0.73)Fe2 single crystal

机译:磁显微结构和域切换的相场仿真(TB0.27DY0.73)FE2单晶

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The morphotropic phase boundary (MPB), separating two ferroic phases with rhombohedral and tetragonal crystal symmetries, has been utilized extensively in ferroelectrics because it can lead to high-performance piezoelectricity. Recently, a parallel ferromagnetic MPB was experimentally reported and was suggested that the optimal point for magneto-mechanical applications might lies on the rhombohedral side. However, the insight of the domain structures and switching mechanism near ferromagnetic MPB is still unclear. In this work, phase-field micromagnetic microelastic modeling was employed to simulate the domain formation and magnetization switching of (Tb 0.27 Dy 0.73 )Fe 2 , whose composition is around the rhombohedral side of ferromagnetic MPB. The results show that four kinds of domains of the rhombohedral phase automatically form twins of {110} or {100} boundaries with 71° and 109° domain walls after a process of nucleation and growth. The rhombohedral domain evolution and phase volume fraction under the external field of 120 kA/m along different directions are investigated. In ferromagnetics subject to an alternating magnetic field, domain magnetization switches to cause a magnetization hysteresis loop and an associated butterfly magnetostriction loop with the alternating magnetic field.
机译:将两种与菱形和四方晶体对称分离的Morphotopic相位边界(MPB)已经广泛用于铁电池,因为它可以导致高性能压电。最近,实验报道了平行的铁磁MPB,并建议磁力机械应用的最佳点可能位于菱体侧。然而,域结构和切换机构附近的铁磁MPB附近的洞察力尚不清楚。在这项工作中,采用基相微磁性微弹性建模来模拟(Tb 0.27 Dy 0.73)Fe 2的畴形成和磁化切换,其组成是铁磁MPB的菱形侧。结果表明,在成核和生长过程之后,rhombeheDral相的四种结构rhombeheheheheh的相自动形成{110}或{100}边界的双胞胎,其具有71°和109°墙壁。研究了沿不同方向的120kA / m的外部场下的菱形域演化和相体积分数。在经过交流磁场的铁磁体中,域磁化开关以使磁化滞后回路和相关的蝶形磁致伸缩环与交变磁场。

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