在奇拉磁体中,meron和skyrmion的拓旋转纹理之间的转换
X Z Yu1, W Koshibae2, Y Tokunaga3
1RIKEN Center for Emergent Matter Science (CEMS), Wako, Japan. yu_x@riken.jp.
Nature
|December 7, 2018
概括
研究人员在磁性材料中观察到新的旋转纹理, 从meron-antimeron方格格子转变为 skyrmion六角格子. 这揭示了不同的拓稳定性和新的电磁性质的潜力.
科学领域:
- 凝聚物质物理学
- 材料科学
- 磁力学
背景情况:
- 具有四边形或六边形结构的晶格在外部刺激下经历过渡.
- 拓性旋转纹理,如美龙,反美龙和斯基米龙,预计会表现出类似的结构过渡,但实验证据缺乏.
研究的目的:
- 通过实验观察和描述拓旋转纹理的格子形式.
- 研究梅隆-抗米龙和斯基米龙网格的结构转变和拓稳定性.
主要方法:
- 在Chiral-lattice磁铁Co8Zn9Mn3的薄板中观察旋转纹理.
- 在实地应用磁场和温度变化.
主要成果:
- 从螺旋状态出现2D正方形格子的美龙和反美龙.
- 在室温下的磁场下,方格格子转化为六角格子.
- 斯基尔米翁表现出对温度变化的强度,而梅龙-抗米龙网则转变为非拓螺旋.
结论:
- 拓螺旋纹理表现出丰富的格子形式和结构过渡,类似于晶格.
- 梅龙,反梅龙和斯基米龙具有不同的拓稳定性.
- 这些发现激发了对拓自旋纹理的新兴电磁性质的进一步研究.
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