Nagase Tomoki, So Yeong-Gi, Yasui Hayata, Ishida Takafumi, Yoshida Hiroyuki K, Tanaka Yukio, Saitoh Koh, Ikarashi Nobuyuki, Kawaguchi Yuki, Kuwahara Makoto, Nagao Masahiro
Department of Electronics, Graduate School of Engineering, Nagoya University, Nagoya, Japan.
Department of Materials Science, Graduate School of Engineering Science, Akita University, Akita, Japan.
Nat Commun. 2021 Jun 9;12(1):3490. doi: 10.1038/s41467-021-23845-y.
Topological defects embedded in or combined with domain walls have been proposed in various systems, some of which are referred to as domain wall skyrmions or domain wall bimerons. However, the experimental observation of such topological defects remains an ongoing challenge. Here, using Lorentz transmission electron microscopy, we report the experimental discovery of domain wall bimerons in chiral magnet Co-Zn-Mn(110) thin films. By applying a magnetic field, multidomain structures develop, and simultaneously, chained or isolated bimerons arise as the localized state between the domains with the opposite in-plane components of net magnetization. The multidomain formation is attributed to magnetic anisotropy and dipolar interaction, and domain wall bimerons are stabilized by the Dzyaloshinskii-Moriya interaction. In addition, micromagnetic simulations show that domain wall bimerons appear for a wide range of conditions in chiral magnets with cubic magnetic anisotropy. Our results promote further study in various fields of physics.
嵌入或与畴壁结合的拓扑缺陷已在各种系统中被提出,其中一些被称为畴壁斯格明子或畴壁双聚物。然而,对这种拓扑缺陷的实验观察仍然是一个持续的挑战。在这里,我们使用洛伦兹透射电子显微镜,报告在手性磁体Co-Zn-Mn(110)薄膜中畴壁双聚物的实验发现。通过施加磁场,多畴结构形成,同时,作为净磁化平面内分量相反的畴之间的局域态,链状或孤立的双聚物出现。多畴的形成归因于磁各向异性和偶极相互作用,而畴壁双聚物则由Dzyaloshinskii-Moriya相互作用稳定。此外,微磁模拟表明,在具有立方磁各向异性的手性磁体中,畴壁双聚物在很宽的条件范围内都会出现。我们的结果促进了物理学各个领域的进一步研究。