Title :
Compact Modeling of a Magnetic Tunnel Junction—Part I: Dynamic Magnetization Model
Author :
Jean-Baptiste Kammerer;Morgan Madec;Luc H?brard
Author_Institution :
Institut d´?lectronique du Solide et des Syst?mes, UMR 7163 (Centre National de Recherches Scientifiques) , Universit? de Strasbourg, Strasbourg Cedex 02, France
fDate :
6/10/2016 12:00:00 AM
Abstract :
The potential application range of spintronic devices is wide. However, few works were carried out in the field of compact modeling of such devices. The lack of compact models dramatically increases the design complexity of circuits using spintronic devices. In this paper, focus is made on magnetic tunnel junctions (MTJs). It is presented in a set of two papers: the first part deals with the magnetic aspects of the MTJ, whereas the second one covers the electrical aspects. In this part, a dynamic magnetization model inspired from the micromagnetic formalism is presented. This vectorial model is able to describe the quiescent state, as well as the transient behavior of the magnetization vector of an anisotropic single-domain element. The dynamic magnetization model is implemented in VHDL-AMS and requires only eight parameters. Simulation results are also presented and compared with theoretical ones.
Keywords :
"Magnetic tunneling","Perpendicular magnetic anisotropy","Mathematical model","Magnetization","Equations","Magnetostatics"
Journal_Title :
IEEE Transactions on Electron Devices
DOI :
10.1109/TED.2010.2047070