论文标题
压力诱导Biskyrmion宿主六边形Mnniga中的等同一相变
Pressure induced isostructural phase transition in biskyrmion host hexagonal MnNiGa
论文作者
论文摘要
磁空是类似涡流的自旋纹理,可以通过磁弹性效应通过外部应力或压力来操纵。在这里,使用压力依赖性同步加速器X射线粉末衍射(XRD)数据分析,我们介绍了在4 GPA约4 GPA的biskyrmion宿主六边形MNNIGA中的同一相变的观察。我们的XRD数据揭示了各向异性压缩行为,压力具有不同的压缩速率,其基础平面中的A轴和棱柱平面中的C轴。但是,六角形对称性保持不变,压力高达14 GPA。使用二阶Birch-Murnagan状态方程将单位细胞体积与压力拟合,这表明,对于高于4 GPA的数据,数据落入了两条不同的曲线。本研究通过在Biskyrmion宿主MNNIGA中施加静水压力来有助于对晶体结构的理解,其中,由于其磁弹性特征,可以通过压力来操纵Skyrmion纹理。
Magnetic skyrmions are vortex-like spin textures, which can be manipulated by external stress or pressure via magnetoelastic effects. Here, we present the observation of isostructural phase transition in a biskyrmion host hexagonal MnNiGa at a pressure around 4 GPa using pressure-dependent synchrotron x-ray powder diffraction (XRD) data analysis. Our XRD data reveals anisotropic compression behavior with pressure with different compression rates of the a-axis in the basal plane and the c-axis in the prismatic plane. However, the hexagonal symmetry remains unchanged for pressure up to 14 GPa. Fitting of unit cell volume with pressure using a second-order Birch-Murnagan equation of state reveals that the data to fall into two distinct curves for those above and below 4 GPa. The present study contributes to the understanding of crystal structure with the application of hydrostatic pressure in the biskyrmion host MnNiGa, wherein the skyrmion textures can be manipulated by pressure due to their magnetoelastic character.