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Effect of hydrogen plasma implantation on the micro-structure and magnetic properties of hcp-Co_(80)^(57)Fe_(4)Ir_(16)thin films
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作者 王辉 吴猛 +7 位作者 周海平 张博 胡世欣 马天勇 李志伟 乔亮 王涛 李发伸 《Chinese Physics B》 SCIE EI CAS CSCD 2021年第5期644-649,共6页
We present detailed investigations of structural and static/dynamic magnetic properties of hydrogenated hcp-Co_(80)^(57)Fe_(4)Ir_(16) soft magnetic thin films.Two different kinds of defects,i.e.,destructive and non-de... We present detailed investigations of structural and static/dynamic magnetic properties of hydrogenated hcp-Co_(80)^(57)Fe_(4)Ir_(16) soft magnetic thin films.Two different kinds of defects,i.e.,destructive and non-destructive,were demonstrated by controlling the negative bias voltage of the hydrogenation process.Our results show that the structure and magnetic properties of our sample can be tuned by the density of the induced defects.These results provide better understanding of the hydrogenation effect and thus can be used in the future for materials processing to meet the requirements of different devices. 展开更多
关键词 soft magnetic thin film hydrogen plasma implantation Mössbauer spectroscopy
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Influence of Nanocrystallization on Magnetic Properties of the Co-Based Alloys Thin Films
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作者 蒋向东 张怀武 文岐业 《Journal of Electronic Science and Technology of China》 2004年第2期60-64,共5页
The rapid recurrent thermal annealing (RRTA) method has been used to amorphous Co-Nb-Zr soft magnetic thin films fabricated by DC sputtering. By using this method, in this paper, the crystalline grains with diameter o... The rapid recurrent thermal annealing (RRTA) method has been used to amorphous Co-Nb-Zr soft magnetic thin films fabricated by DC sputtering. By using this method, in this paper, the crystalline grains with diameter of about 30~90 nm are formed and the partial nanocrystallization of the films is realized. As a result, the soft magnetic properties of the Co-based nanocrystalline thin films are improved greatly after RRTA: their resistivity is a quarter decreased; the average initial permeability is enhanced from 3 500 to over 5 000; the impedance is increased form 20 ~100 ?(at 1.4 GHz); the resonance peak is moved about 200 MHz down to low frequency. The evident improvement enables the Co-based nanocrystalline thin films to be used over a much wide frequency range of 1 KHz ~1.5 GHz. 展开更多
关键词 soft magnetic thin film Co base rapid recurrent thermal annealing NANOCRYSTALLINE
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