Title Magnetization Dynamics Under a Quasiperiodic Magnetic Field
Authors Laroze, David , BECERRA ALONSO, DAVID, Gallas, Jason A. C. , Pleiner, Harald
External publication No
Means IEEE Trans Magn
Scope Article
Nature Científica
JCR Quartile 2
SJR Quartile 1
JCR Impact 1.42200
SJR Impact 0.76900
Web https://www.scopus.com/inward/record.uri?eid=2-s2.0-84867770580&doi=10.1109%2fTMAG.2012.2207378&partnerID=40&md5=4e22a8d48cf1a69c5336f0e31b1724eb
Publication date 01/11/2012
ISI 000310194400213
Scopus Id 2-s2.0-84867770580
DOI 10.1109/TMAG.2012.2207378
Abstract In the present work, we study the deterministic spin dynamics of an anisotropic magnetic particle in the presence of a time dependent magnetic field using the Landau-Lifshitz-Gilbert equation. In particular, we study the case when the magnetic field consists in two terms. One is perpendicular to the anisotropy direction and has quasiperiodic time dependence, while the other term is constant and parallel to the anisotropy direction. We numerically characterize the dynamical behavior of the system by monitoring the Lyapunov exponents, and by calculating Poincare sections and Fourier spectra. In addition, we calculate analytically the corresponding Melnikov function which gives us the bifurcations of the homoclinic orbits. We find a rather complicated landscape of sometimes closely intermingled chaotic and non-chaotic areas in parameters space. Finally, we show that the system exhibits strange nonchaotic attractors.
Keywords Chaotic dynamics; Lyapunov spectrum; magnetization dynamics; quasiperiodic (QP) modulation
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