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首页> 外文期刊>Physical review.B.Condensed matter and materials physics >Typical skyrmions versus bimerons: A long-distance competition in ferromagnetic racetracks
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Typical skyrmions versus bimerons: A long-distance competition in ferromagnetic racetracks

机译:典型的臭鼬与双密龙:铁磁赛道的远程竞争

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摘要

During the last years, topologically protected collective modes of magnetization have called much attention. Among these, skyrmions and merons have been objects of intense study. In particular, topological skyrmions are structures with an integer skyrmion number Q while merons have a half-integer skyrmion charge q. In this paper, we consider a Q = 1 skyrmion, composed of a meron and an antimeron (bimeron), displacing in a ferromagnetic racetrack, disputing a long-distance competition with its more famous counterpart, the typical Q = 1 cylindrically symmetrical skyrmion. Both types of topological structures induce a Magnus force, and then they are subject to the skyrmion Hall effect. The influence of the Dzyaloshinskii-Moriya interaction DMI present in certain materials and able to induce DMI skyrmions is also analyzed. Our main aim is to compare the motions (induced by a spin-polarized current) of these objects along with their own specific racetracks. We also investigate some favorable factors which are able to give breath to the competitors, impelling them to remain in the race for longer distances before their annihilation at the racetrack lateral border. An interesting result is that the DMI skyrmion loses this hypothetical race due to its larger rigidity.
机译:在过去几年中,拓扑保护的磁化的集体模式称为大量关注。其中,斯基尔和梅尔森一直是激烈的研究。特别是,拓扑信号是具有整数Skyrmion号Q的结构,而Merons具有半整数斯基芯电荷Q。在本文中,我们考虑了一个Q = 1次智能,由Meron和Antimeron(Bimeron)组成,以铁磁赛道脱离,与其更具着名的对手争取长途竞争,典型的Q = 1圆柱对称的Skyrmion。两种类型的拓扑结构诱导马力,然后它们受到斯基尔霍尔疗效的影响。还分析了某些材料中存在的Dzyaloshinskii-Moriya相互作用DMI的影响,并能够诱导DMI次幂。我们的主要目的是将这些物体的动作与他们自己的特定赛道进行比较(旋转偏振电流)。我们还调查了一些能够向竞争对手发出呼吸的一些有利因素,推动他们在赛道横向边界湮灭之前留在比赛中。一个有趣的结果是DMI Skyrmion由于其较大的刚性而导致这种假设的比赛。

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  • 来源
    《Physical review.B.Condensed matter and materials physics》 |2020年第10期|104409.1-104409.6|共6页
  • 作者单位

    Universidade Federal de Vicosa Departamento de Fisica Avenida Peter Henry Rolfs s 36570-000 Vicosa MG Brazil;

    Universidade Federal de Vicosa Departamento de Fisica Avenida Peter Henry Rolfs s 36570-000 Vicosa MG Brazil;

    Universidade Federal de Vicosa Departamento de Fisica Avenida Peter Henry Rolfs s 36570-000 Vicosa MG Brazil;

    Universidade Federal de Vicosa Departamento de Fisica Avenida Peter Henry Rolfs s 36570-000 Vicosa MG Brazil;

    Departamento de Ciencias Naturais Universidade Federal do Espirito Santo Rodovia Governador Mario Covas Km 60 29932-540 Sao Mateus ES Brazil;

    Departamento de Ciencias Naturais Universidade Federal do Espirito Santo Rodovia Governador Mario Covas Km 60 29932-540 Sao Mateus ES Brazil;

    Departamento de Fisica CEDENNA Universidad de Santiago de Chile USACH Av. Ecuador 3493 Santiago Chile;

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