Current-induced self-switching of perpendicular magnetization in CoPt single layer

被引:0
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作者
Liang Liu
Chenghang Zhou
Tieyang Zhao
Bingqing Yao
Jing Zhou
Xinyu Shu
Shaohai Chen
Shu Shi
Shibo Xi
Da Lan
Weinan Lin
Qidong Xie
Lizhu Ren
Zhaoyang Luo
Chao Sun
Ping Yang
Er-Jia Guo
Zhili Dong
Aurelien Manchon
Jingsheng Chen
机构
[1] National University of Singapore,Department of Materials Science and Engineering
[2] Nanyang Technological University,School of Materials Science and Engineering
[3] National University of Singapore,Singapore Synchrotron Light Source (SSLS)
[4] National University of Singapore,Department of Electrical and Computing Engineering
[5] Chinese Academy of Sciences,Beijing National Laboratory for Condensed Matter Physics and Institute of Physics
[6] Aix-Marseille Univ,Suzhou Research Institute
[7] CNRS,Chongqing Research Institute
[8] CINaM,undefined
[9] National University of Singapore,undefined
[10] National University of Singapore,undefined
[11] Institute of Material Research and Engineering,undefined
[12] A*STAR,undefined
[13] Institute of Sustainability for Chemicals,undefined
[14] Energy and Environment,undefined
[15] A*STAR (Agency for Science,undefined
[16] Technology and Research),undefined
来源
Nature Communications | / 13卷
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摘要
All-electric switching of perpendicular magnetization is a prerequisite for the integration of fast, high-density, and low-power magnetic memories and magnetic logic devices into electric circuits. To date, the field-free spin-orbit torque (SOT) switching of perpendicular magnetization has been observed in SOT bilayer and trilayer systems through various asymmetric designs, which mainly aim to break the mirror symmetry. Here, we report that the perpendicular magnetization of CoxPt100-x single layers within a special composition range (20 < x < 56) can be deterministically switched by electrical current in the absence of external magnetic field. Specifically, the Co30Pt70 shows the largest out-of-plane effective field efficiency and best switching performance. We demonstrate that this unique property arises from the cooperation of two structural mechanisms: the low crystal symmetry property at the Co platelet/Pt interfaces and the composition gradient along the thickness direction. Compared with that in bilayers or trilayers, the field-free switching in CoxPt100-x single layer greatly simplifies the SOT structure and avoids additional asymmetric designs.
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