Enhanced dipole-interaction in Nd-Dy-Fe-Co-B/Fe composite thick stacked trilayer

Author:

Li C. H.12ORCID,Zhao X. T.1,Liu L.1ORCID,Liu W.1ORCID,Ye Z. X.12,Wu J. X.12ORCID,Ma J.12ORCID,Zhang Z. D.1ORCID

Affiliation:

1. Shenyang National Laboratory for Materials Science, Institute of Metal Research, Chinese Academy of Sciences 1 , Shenyang 110016, China

2. School of Materials Science and Engineering, University of Science and Technology of China 2 , Shenyang 110016, China

Abstract

It is crucial to better understand the magnetization reversal process between soft and hard magnets and to achieve a high maximum energy product in thick composite multilayers. In this study, we find that the exchange interactions dominate in soft–hard-magnetic composite bilayers, while dipole interactions are predominant in soft–hard-magnetic composite trilayers. Based on the first-order reversal curve, magnetization reversal models are developed for both the thick composite bilayer and trilayer. Dipole interactions play an important role in the long range, resulting in higher coercivity and remanence in the thick trilayer. A multilayer in a stacked trilayer structure is achieved, which is composed of thick films with a perpendicular magnetic anisotropy at a thickness of up to 16 μm. The enhanced dipole interactions lead to a remanent polarization of 1 T and a maximum energy product of 22.5 MGOe. This work contributes to the preparation of thick films with a high maximum energy product for applications in magnetic microelectromechanical systems.

Funder

National Key R&D program of China

National Natural Science Foundation of China

Publisher

AIP Publishing

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