论文标题
磁性Neel Hopfion和Neel Toron之间的相互转换
Mutual conversion between a magnetic Neel hopfion and a Neel toron
论文作者
论文摘要
三维(3D)磁纹理由于其引人入胜的结构和动态行为引起了研究人员的极大关注。磁跳是3D磁纹理的突出例子。在这里,我们在数值上研究了外部磁场下的Neel型跳跃与Neel型Toron之间的相互转换。我们还研究了具有强烈垂直磁各向异性的薄膜中跳跃和托隆的激发模式。发现在没有外部磁场的情况下,Neel型跳跃可能是稳定的状态,并且其直径随平面外磁场而变化。 Neel型跳跃可能会在约20吨的平面磁场上转变为Neel型Toron,其中横截面结构是Neel型的Skyrmion。在面积微波磁场的存在下,霍夫夫和托伦显示出不同的激发模式。我们的结果提供了一种方法,可以实现Neel型跳跃和Neel型Toron之间的转换,这也为区分Bloch型和Neel型跳跃提供了一种方法。
Three-dimensional (3D) magnetic textures attract great attention from researchers due to their fascinating structures and dynamic behaviors. Magnetic hopfion is a prominent example of 3D magnetic textures. Here, we numerically study the mutual conversion between a Neel-type hopfion and a Neel-type toron under an external magnetic field. We also investigate the excitation modes of hopfions and torons in a film with strong perpendicular magnetic anisotropy. It is found that the Neel-type hopfion could be a stable state in the absence of the external magnetic field, and its diameter varies with the out-of-plane magnetic field. The Neel-type hopfion may transform to a Neel-type toron at an out-of-plane magnetic field of about 20 mT, where the cross section structure is a Neel-type skyrmion. The hopfion and toron show different excitation modes in the presence of an in-plane microwave magnetic field. Our results provide a method to realize the conversion between a Neel-type hopfion and a Neel-type toron, which also gives a way to distinguish Bloch-type and Neel-type hopfions.