首站-论文投稿智能助手
典型文献
Tailoring perpendicular magnetic anisotropy in Co/Pt multilayers by interface doping with ultrathin Fe layer
文献摘要:
The effect of ultrathin Fe layer on perpendicular magnetic anisotropy(PMA)in magnetron-sputtered Co/Pt multilayers was investigated by magnetic measurements.Magnetization hysteresis(M-H)loops and microstructures of the samples were measured by vibrating sample mag-netometer(VSM)and X-ray diffraction(XRD)and high-resolution transmission electron microscopy(HRTEM),respectively.It is found that the PMA is strongly dependent on the interface where Fe layer was doped.When Fe layer was doped at Co/Pt interface where Pt was deposited on Co,the PMA decreases monotonically with Fe layer thickness(tFe)increasing.However,when Fe layer was doped at Pt/Co interface where Co was deposited on Pt,the PMA shows a peak at tFe=0.1 nm.It is considered that the PMA variation is mainly due to the tuning in the electron occupation states of 3d orbits at Fe-doped Pt/Co interface.Furthermore,the annealing stability of PMA can also be improved when Fe layer was doped at Pt/Co interface.HRTEM results demonstrate that the magnetic anisotropy evolution is mainly caused by anneal-induced interdiffusion.
文献关键词:
作者姓名:
Xi Chen;Shao-Long Jiang;Dong-Wei Wang;Kang Yang;Jin-Hui Lu;Guang-Hua Yu
作者机构:
Department of Materials Physics and Chemistry,University of Science and Technology Beijing,Beijing 100083,China;National Center for Nanoscience and Nanotechnology,Beijing 100190,China
引用格式:
[1]Xi Chen;Shao-Long Jiang;Dong-Wei Wang;Kang Yang;Jin-Hui Lu;Guang-Hua Yu-.Tailoring perpendicular magnetic anisotropy in Co/Pt multilayers by interface doping with ultrathin Fe layer)[J].稀有金属(英文版),2022(11):3823-3827
A类:
netometer
B类:
Tailoring,perpendicular,magnetic,anisotropy,Co,Pt,multilayers,by,interface,doping,ultrathin,effect,PMA,magnetron,sputtered,was,investigated,measurements,Magnetization,hysteresis,loops,microstructures,samples,were,measured,vibrating,VSM,ray,diffraction,high,resolution,transmission,electron,microscopy,HRTEM,respectively,It,found,that,strongly,dependent,where,doped,When,deposited,decreases,monotonically,thickness,tFe,increasing,However,when,shows,peak,considered,variation,mainly,due,tuning,occupation,states,3d,orbits,Furthermore,annealing,stability,can,also,be,improved,results,demonstrate,evolution,caused,induced,interdiffusion
AB值:
0.465828
相似文献
Effect of molybdenum on interfacial properties of titanium carbide reinforced Fe composite
Seungchan Cho;Junghwan Kim;Ilguk Jo;Jae Hyun Park;Jaekwang Lee;Hyun-Uk Hong;Bong Ho Lee;Wook Ryol Hwang;Dong-Woo Suh;Sang-Kwan Lee;Sang-Bok Lee-Composites Research Division,Korea Institute of Materials Science(KIMS),Changwon 51508,South Korea;Advanced Materials Engineering,Dong-Eui University,Busan 47340,South Korea;Department of Aerospace and Software Engineering,Gyeongsang National University,Jinju 52828,South Korea;Department of Physics,Pusan National University,Busan 46241,South Korea;Department of Materials Convergence and System Engineering,Changwon National University,Changwon 51140,South Korea;Center for Core Research Facilities,Daegu Gyeongbuk Institute of Science and Technology,Daegu 42988,South Korea;School of Mechanical Engineering,Gyeongsang National University,Jinju 52828,South Korea;Graduate Institute of Ferrous Technology,Pohang University of Science and Technology,Gyeongbuk 37673,South Korea
Additive manufacturing of a Co-Cr-W alloy by selective laser melting:In-situ oxidation,precipitation and the corresponding strengthening effects
Kefeng Li;Zhi Wang;Kaikai Song;Khashayar Khanlari;Xu-Sheng Yang;Qi Shi;Xin Liu;Xinhua Mao-Institute of New Materials,Guangdong Academy of Sciences,Guangzhou 510650,China;National Engineering Research Center of Powder Metallurgy of Titanium and Rare Metals,Guangzhou 510650,China;Guangdong Key Laboratory for Advanced Metallic Materials Processing,South China University of Technology,Guangzhou 510641,China;School of Mechanical,Electrical and Information Engineering,Shandong University,Weihai 264209,China;Advanced Manufacturing Technology Research Center,Department of Industrial and Systems Engineering,The Hong Kong Polytechnic University,Hung Hom,Kowloon,Hong Kong,China;Hong Kong Polytechnic University Shenzhen Research Institute,Shenzhen 518000,China
机标中图分类号,由域田数据科技根据网络公开资料自动分析生成,仅供学习研究参考。