期刊文献+

富Mn型MnNiGa Heusler合金的磁性能及交换偏置效应

Magnetic properties and exchange bias effect of Mn-rich MnNiGa Heusler alloy
下载PDF
导出
摘要 为了理解和丰富交换偏置现象,对富Mn型Heusler合金的磁性能和交换偏置效应及随其成分的演变规律进行了研究。利用电弧熔炼法制备Mn_(50)Ni_(50-x)Ga_(x)(x=14,10,6,2)系列合金,通过直流热磁曲线测试分析各组分合金在降温过程中出现的磁性团簇;然后利用低温下磁滞回线测试计算并研究不同Mn成分下合金的交换偏置效应及其演变规律。结果表明,这些团簇会在外场作用下逐渐冻结为铁磁团簇,其与反铁磁母相的相互钉扎进一步导致交换偏置的产生。其交换偏置效应在Mn50Ni40Ga10合金组分处达到了最大值H_(E)=4377.06 Oe。通过对不同Ga(或者Ni)成分下交换偏置效应规律的研究和分析,该工作将为富Mn相Heusler合金体系的磁性特点提供丰富的实验和理论支撑。 In order to understand and enrich the phenomenon of exchange bias,the magnetic properties and exchange bias effect of Mn rich Heusler alloys were studied.And the Mn_(50)Ni_(50-x)Ga_(x)(x=14,10,6,2)series alloys were prepared by the arc melting method,and the magnetic clusters of various component alloys during the cooling process were analyzed by DC thermal magnetic curve test;The exchange bias effect and evolution laws with different Mn compositions were studied through the hysteresis loops.The results show that these clusters will gradually freeze into ferromagnetic clusters under the external field,and they will be pinned to the antiferromagnetic mother phase to cause exchange bias.The exchange bias effect reaches the maximum value H_(E)=4377.06 Oe at the composition of Mn_(50)Ni_(40)Ga_(10) alloy.This work will provide rich experimental and theoretical support for the magnetic study of the Mn-rich Heusler alloy system.
作者 李佳宁 曹开颜 田方华 周超 张垠 杨森 LI Jianing;CAO Kaiyan;TIAN Fanghua;ZHOU Chao;ZHANG Yin;YANG Sen(MOE Key Laboratory for Non-Equilibrium Synthesis and Modulation of Condensed Matter, Xi’an Jiaotong University, Xi’an 710049, China)
出处 《中国科技论文》 CAS 北大核心 2021年第4期349-353,共5页 China Sciencepaper
基金 国家自然科学基金资助项目(51701149,51801145,91963111)。
关键词 磁学 HEUSLER合金 交换偏置效应 磁性材料 自旋玻璃团簇 magnetism Heusler alloy exchange bias effect magnetic materials spin glass clusters
  • 相关文献

参考文献2

二级参考文献61

  • 1Tulapurkar A A,Suzuki Y,Fukushima A,et al.Spin-Torque Diode Effect in Magnetic Tunnel Junctions[J].Nature,2005,438(7 066):339-342.
  • 2Bruno P.Theory of Interlayer Exchange Interactions in Magnetic Multilayens[J].Journal of Physics-Condensed Matter,1999,11(48):9 403-9 419.
  • 3Egelhoff W F,Chen P J,Powell C J,et al.Specular Electron Scattering in Metallic Thin Films[J].Journal of Vacuum Science & Technology B,1999,17(4):1 702-1 707.
  • 4Baltz V,Sort J,Landis S,et al.Tailoring Size Effects on the Exchange Bias in Ferromagnetic-Antiferromagnetic<100 nm Nanostructures[J].Physical Review Letters,2005,94(11):117 201.
  • 5Kobrinskii A L,Goldman A M,Varela M,et al.Thickness Dependence of the Exchange Bias in Epitaxial Manganite Bilayeis[J].Physical Review B,2009,79(9):094 405.
  • 6Zhan Q F,Krishnan K M.In-Plane Reorientation of Agnetiza-tion in Epitaxial Exchange Biased Fe/MnPd Bilayera[J].Ap-plied Physics Letters,2010,96(11):112 506.
  • 7Dho J,Blamire M G.Competing Functionality in Multiferroic YMnO3[J].Applied Physics Letters,2005,87:252 504.
  • 8Zhu S J,Zhao B R,Zhu B Y,et al.Oscillatory Exchange Coupling in La0.67Sr0.33MnO3/SrTiO3 Superlattices[J].Applied Physics Letters,2007,91(1):012 505.
  • 9Tang Y K,Sun Y,Cheng Z H.Exchange Bias Associated with Phase Separation in the Perovskite Cobaltite La1-xSrxGoO3[J].Physical Review B,2006,73(17):174 419.
  • 10Qian T,Li T,Zhang T,et al.Exchange Bias Tuned by Cool-ing Field in Phase Separated Y0.2Ca0.8MnO3[J].Applied Phy-sics Letters,2007,90:012 503.

共引文献6

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部