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Spin-orbit torque-induced magnetization switching in Pt/Co-Tb/Ta structures

机译:PT / CO-TB / TA结构中的旋转轨道扭矩诱导的磁化切换

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摘要

Although transition metal (TM)-rare earth (RE) alloy film has potential application as an information storage medium in spintronic devices, study of the physical mechanism and microscopic process for the current-induced magnetization switching by spin-orbit torque (SOT) in TM-RE is still inadequate. In this work, we investigated the SOT effect and its driven magnetization switching in Pt/Co-Tb/Ta structures with various Co-Tb compositions. The results show that the current-induced SOT effective fields follow 1/M_S law near the compensation composition in this structure. Because of the large SOT effective field and the low coercivity for the Co-Tb layer near the compensation composition, the current-induced magnetization switching with a threshold current density as low as 1010 A/m2 was achieved in the system. The direct Kerr imaging on the switching process verifies two different current-induced switching mechanisms in the Pt/Co-Tb/Ta system.
机译:虽然过渡金属(TM) - 地球(RE)合金膜具有作为旋转式装置中的信息存储介质的潜在应用,但是通过旋转轨道扭矩(SOT)的电流引起的磁化切换的物理机理和微观过程研究TM-RE仍然不充分。在这项工作中,我们调查了具有各种CO-TB组合物的PT / CO-TB / TA结构中的SOT效应及其驱动磁化切换。结果表明,目前诱导的SOT有效领域在该结构中的补偿组合物附近遵循1 / M_的法律。由于在补偿组合物附近的COT有效场和CO-TB层的低矫顽力,在系统中实现了具有低至1010A / M2的阈值电流密度的电流引起的磁化切换。切换过程中的直接kerr成像在Pt / Co-TB / TA系统中验证了两种不同的电流诱导的开关机制。

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  • 来源
    《Applied Physics Letters》 |2021年第2期|022401.1-022401.6|共6页
  • 作者单位

    Key Laboratory for Magnetism and Magnetic Materials of the Ministry of Education Lanzhou University Lanzhou 730000 People's Republic of China;

    Key Laboratory for Magnetism and Magnetic Materials of the Ministry of Education Lanzhou University Lanzhou 730000 People's Republic of China;

    Key Laboratory for Magnetism and Magnetic Materials of the Ministry of Education Lanzhou University Lanzhou 730000 People's Republic of China;

    Cuiying Honors College Lanzhou University Lanzhou 730000 People's Republic of China;

    Key Laboratory for Magnetism and Magnetic Materials of the Ministry of Education Lanzhou University Lanzhou 730000 People's Republic of China;

    Key Laboratory for Magnetism and Magnetic Materials of the Ministry of Education Lanzhou University Lanzhou 730000 People's Republic of China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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