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スキルミオンを作る?消す?動かす

机译:创建,擦除或移动技能小兵

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摘要

Skyrmions were originally proposed by British physicist Tony Skyrme in the 1960s as topological solitons to account for the stability of baryons in particle physics. Realization of skyrmions as vortex-like swirling spin textures was discovered in ferromagnets with chiral crystal symmetry, in which ferromagnetic-exchange interactions favoring parallel spin alignment and Dzyaloshinskii-Moriya interactions favoring rotational spin alignment strongly compete. Subsequent studies have revealed that skyrmions possess numerous advantageous properties for application to information carriers in high-density and low-energy-consuming magnetic memories and logic devices. These properties are: (1) topologically protected stability, (2) small nanometric size, (3) rather high transition temperatures, and (4) ultralow fields or electric currents to drive their motion. This article first introduces fundamental properties of skyrmions and skyrmionic materials and then presents recent attempts and ideas on writing, deleting, and driving skyrmions towards establishing their functions in memory devices.
机译:Skyrmion最初是由英国物理学家Tony Skyrme于1960年代提出的,是拓扑孤子,用以解释重子在粒子物理学中的稳定性。在具有手性晶体对称性的铁磁体中发现了像涡旋一样的旋旋自旋纹理的skyrmion,其中铁磁交换相互作用有利于平行自旋对准,而Dzyaloshinskii-Moriya相互作用有利于自旋对准。随后的研究表明,天敌拥有众多优势,可应用于高密度,低能耗的磁存储器和逻辑器件中的信息载体。这些特性是:(1)受拓扑保护的稳定性;(2)纳米尺寸小;(3)相当高的转变温度;(4)超低电场或电流以驱动其运动。本文首先介绍了天体离子和天体离子材料的基本特性,然后介绍了有关写入,删除和驱动天体离子以在存储设备中建立其功能的最新尝试和想法。

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