For improving high-frequency characteristics and soft magnetic properties of (Fe <TEX>$_7$</TEX> Co <TEX>$_3$</TEX> )B-based thin films, the effects of Ni addition and an oblique deposition method on the microstructures have be...
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https://www.riss.kr/link?id=A107692938
Yu, E. ; Shim, J.S. ; Kim, I. ; Kim, J. ; Han, S.H. ; Kim, H.J. ; Kim, K.H. ; Yamaguchi, M.
2005
-
SCOPUS,SCIE
학술저널
3259-3261(3쪽)
0
상세조회0
다운로드다국어 초록 (Multilingual Abstract)
For improving high-frequency characteristics and soft magnetic properties of (Fe <TEX>$_7$</TEX> Co <TEX>$_3$</TEX> )B-based thin films, the effects of Ni addition and an oblique deposition method on the microstructures have be...
For improving high-frequency characteristics and soft magnetic properties of (Fe <TEX>$_7$</TEX> Co <TEX>$_3$</TEX> )B-based thin films, the effects of Ni addition and an oblique deposition method on the microstructures have been examined. The Ni addition to (Fe <TEX>$_7$</TEX> Co <TEX>$_3$</TEX> )B films was found to enhance B segregation on grain boundaries, which resulted in the formation of a well-defined columnar structure and the increase of film resistivity. Utilizing the columnar structure, large in-plane anisotropy was induced by an oblique deposition method which enabled the control of the inclination angle of the columns. As a result, the ferromagnetic resonance of (Fe <TEX>$_7$</TEX> Co <TEX>$_3$</TEX> ) <TEX>$_71$</TEX> Ni <TEX>$_7$</TEX> B <TEX>$_22$</TEX> thin films reached 6.2GHz.
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