4.5 Article

Investigation on magnetic properties of parallel and perpendicular oriented Nd2Fe14B/Fe65Co35/Nd2Fe14B films by the micro-magnetism finite element method

Journal

JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS
Volume 394, Issue -, Pages 117-120

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.jmmm.2015.06.041

Keywords

Micro-magnetism finite element method; Maximum energy product; Nd2Fe14B/Fe65Co35/Nd2Fe14B trilayers

Funding

  1. National Natural Science Foundation of China [51331003, 51371002]
  2. Key Program of Science and Technology Development Project of Beijing Municipal Education Commission [KM201210005011]
  3. Samsung Advanced Institute of Technology
  4. Jinghua Talents of Beijing University of Technology
  5. Rixin Talents of Beijing University of Technology
  6. Importation and Development of High-Caliber Talents Project of Beijing Municipal Institutions

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In present study, the hysteresis loops and the magnetic reversal process of both the parallel and the perpendicular oriented Nd2Fe14B/Fe65Co35/Nd2Fe14B trilayers with different soft phase thicknesses were studied by the micro-magnetism finite element method. Analysis of magnetization vectors' evolution in demagnetization process indicates that the parallel and the perpendicular oriented trilayers exhibit different magnetic reversal behaviors. All the demagnetization curves of the perpendicular oriented trilayers exhibits single phase behavior, while noticeable kinks presents in the demagnetization curves of the parallel oriented trilayers with the soft phase thickness equal to or larger than 12 nm. Moreover, as the thickness of the soft phase increases, the remanence (Br) of the parallel and the perpendicular oriented trilayers increases first, peaks respectively at 1.90 and 1.93 T, respectively, and then decreases again. On the other hand, the coercivity (mu H-0(c)) of the parallel and the perpendicular oriented trilayers drops monotonically with the increase of soft layers thickness. As a result, the optimal maximum energy product [(BH)(max)] of the parallel and the perpendicular oriented trilayers are 630 kJ/m(3) and 592 kJ/m(3), respectively. Deviation degree of orientation was simulated for the perpendicular oriented trilayers with Ls =10 nm. (C) 2015 Elsevier B.V. All rights reserved.

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