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通过垂直电流注入实现磁斯格明子气泡的电产生与消除

Electrical Generation and Deletion of Magnetic Skyrmion-Bubbles via Vertical Current Injection.

作者信息

Yang Seungmo, Moon Kyoung-Woong, Ju Tae-Seong, Kim Changsoo, Kim Hyun-Joong, Kim Juran, Tran Bao Xuan, Hong Jung-Il, Hwang Chanyong

机构信息

Quantum Spin Team, Korea Research Institute of Standards and Science, Daejeon, 34113, Republic of Korea.

Department of Emerging Materials Science, DGIST, Daegu, 42988, Republic of Korea.

出版信息

Adv Mater. 2021 Nov;33(45):e2104406. doi: 10.1002/adma.202104406. Epub 2021 Sep 27.

Abstract

The magnetic skyrmion is a topologically protected spin texture that has attracted much attention as a promising information carrier because of its distinct features of suitability for high-density storage, low power consumption, and stability. One of the skyrmion devices proposed so far is the skyrmion racetrack memory, which is the skyrmion version of the domain-wall racetrack memory. For application in devices, skyrmion racetrack memory requires electrical generation, deletion, and displacement of isolated skyrmions. Despite the progress in experimental demonstrations of skyrmion generation, deletion, and displacement, these three operations have yet to be realized in one device. Here, a route for generating and deleting isolated skyrmion-bubbles through vertical current injection with an explanation of its microscopic origin is presented. By combining the proposed skyrmion-bubble generation/deletion method with the spin-orbit-torque-driven skyrmion shift, a proof-of-concept experimental demonstration of the skyrmion racetrack memory operation in a three-terminal device structure is provided.

摘要

磁性斯格明子是一种具有拓扑保护的自旋纹理,由于其适用于高密度存储、低功耗和稳定性等独特特性,作为一种有前景的信息载体备受关注。迄今为止提出的斯格明子器件之一是斯格明子赛道存储器,它是畴壁赛道存储器的斯格明子版本。对于器件应用而言,斯格明子赛道存储器需要实现孤立斯格明子的电产生、删除和位移。尽管在斯格明子产生、删除和位移的实验演示方面取得了进展,但这三种操作尚未在一个器件中实现。在此,提出了一种通过垂直电流注入产生和删除孤立斯格明子气泡的方法,并对其微观起源进行了解释。通过将所提出的斯格明子气泡产生/删除方法与自旋轨道扭矩驱动的斯格明子位移相结合,在三端器件结构中提供了斯格明子赛道存储器操作的概念验证实验演示。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1cb2/11469294/da3ee156eb74/ADMA-33-2104406-g001.jpg

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