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Perpendicular magnetic anisotropy of Pd/Co_(2)MnSi/NiFe_(2)O_(4)/Pd multilayers on F-mica substrates

Perpendicular magnetic anisotropy of Pd/Co2MnSi/NiFe2O4/Pd multilayers on F-mica substrates

作     者:Qingwang Bai Bin Guo Qin Yin Shuyun Wang 白青旺;郭斌;尹钦;王书运

作者机构:School of Physics and ElectronicsShandong Normal UniversityJi'nan 250358China 

出 版 物:《Chinese Physics B》 (中国物理B(英文版))

年 卷 期:2022年第31卷第1期

页      面:568-572页

核心收录:

学科分类:07[理学] 070205[理学-凝聚态物理] 0702[理学-物理学] 

基  金:the Shandong Provincial Natural Science Foundation China(Grant No.ZR2018MEM004) 

主  题:perpendicular magnetic anisotropy Co_(2)MnSi ferrimagnetics NiFe_(2)O_(4) 

摘      要:Pd/Co_(2)MnSi(CMS)/NiFe_(2)O_(4)(NFO)/Pd multilayers were fabricated on F-mica substrate by magnetron *** best PMA performance of the multilayer structure Pd(3 nm)/CMS(5 nm)/NFO(0.8 nm)/Pd(3 nm)was obtained by adjusting the thickness of the CMS and NFO layers.F-mica substrate has a flatter surface than glass and Si/SiO_(2) *** magnetic anisotropy energy density(K_(eff))of the sample deposited on F-mica substrates is 0.6711 Merg/cm^(3)(1 erg=10^(-7) J),which is about 30%higher than that of the multilayer films deposited on glass(0.475 Merg/cm^(3))and Si/SiO_(2)(0.511 Merg/cm^(3))substrates,and the R_(Hall) and H_(C) are also significantly *** this study,the NFO layer prepared by sputtering in the high purity Ar environment was exposed to the high purity O_(2) atmosphere for 5 min,which can effectively eliminate the oxygen loss and oxygen vacancy in NFO,ensuring enough Co-O orbital hybridization at the interface of CMS/NFO,and thus effectively improve the sample PMA.

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