Two types of magnetic bubbles in MnNiGa observed via Lorentz microscopy

凝聚态物理 磁晶各向异性 气泡 垂直的 磁铁 洛伦兹变换 磁各向异性 磁性结构 磁力显微镜 平面(几何) 磁畴 材料科学 磁场 物理 磁化 经典力学 机械 几何学 数学 量子力学
作者
Hiroshi Nakajima,Atsuhiro Kotani,Ken Harada,Shigeo Mori
出处
期刊:Japanese Journal of Applied Physics [Institute of Physics]
卷期号:60 (12): 123003-123003 被引量:4
标识
DOI:10.35848/1347-4065/ac34d2
摘要

Abstract Magnetic bubbles are remarkable spin structures that developed in uniaxial magnets with strong magnetocrystalline anisotropy. Several contradictory reports have been published concerning the magnetic bubble structure in a metallic magnet MnNiGa: Biskyrmions or type-II bubbles. Lorentz microscopy in polycrystalline MnNiGa was used to explain the magnetic bubble structure. Depending on the connection between the magnetic easy axis and the observation plane, two types of magnetic bubbles were formed. Magnetic bubbles with 180° domains were formed if the easy axis was away from the direction perpendicular to the observation plane. The contrast of biskyrmion is reproduced by this form of a magnetic bubble. When the easy axis was approximately perpendicular to the observing plane, type-II bubbles were observed in the same specimen. The findings will fill a knowledge gap between prior reports on magnetic bubbles in MnNiGa.
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