铁磁性
凝聚态物理
自旋电子学
材料科学
电场
磁电阻
磁化
巨磁阻
磁性
多铁性
磁场
铁磁性
光电子学
物理
铁电性
量子力学
电介质
作者
Aihua Tang,Chao Li,Teng Xu,Yiqing Dong,Jing Ma,Pu Yu,Ce‐Wen Nan,Yuanhua Lin,Tianxiang Nan,Wanjun Jiang,Di Yi
出处
期刊:Nano Letters
[American Chemical Society]
日期:2024-01-04
卷期号:24 (2): 632-639
标识
DOI:10.1021/acs.nanolett.3c03704
摘要
Electrical control of magnetism is highly desirable for energy-efficient spintronic applications. Realizing electric-field-driven perpendicular magnetization switching has been a long-standing goal, which, however, remains a major challenge. Here, electric-field control of perpendicularly magnetized ferrimagnetic order via strain-mediated magnetoelectric coupling is reported. We show that the gate voltages isothermally toggle the dominant magnetic sublattice of the compensated ferrimagnet FeTb at room temperature, showing high reversibility and good endurance under ambient conditions. By implementing this strategy in FeTb/Pt/Co spin valves with giant magnetoresistance (GMR), we demonstrate that the distinct high and low resistance states can be selectively controlled by the gate voltages with assisting magnetic fields. Our results provide a promising route to use ferrimagnets for developing electric-field-controlled, low-power memory and logic devices.
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