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Hyper-chaotic Magnetisation Dynamics of Two Interacting Dipoles

Autores

Urzagasti, D. , BECERRA ALONSO, DAVID, Perez, L. M. , Mancini, H. L. , Laroze, D.

Publicación externa

No

Medio

J. Low Temp. Phys.

Alcance

Article

Naturaleza

Científica

Cuartil JCR

Cuartil SJR

Impacto JCR

0.787

Impacto SJR

0.525

Fecha de publicacion

01/12/2015

ISI

000363956000003

Scopus Id

2-s2.0-84946532303

Abstract

The present work is a numerical study of the deterministic spin dynamics of two interacting anisotropic magnetic particles in the presence of a time-dependent external magnetic field using the Landau-Lifshitz equation. Particles are coupled through the dipole-dipole interaction. The applied magnetic field is made of a constant longitudinal amplitude component and a time-dependent transversal amplitude component. Dynamical states obtained are represented by their Lyapunov exponents and bifurcation diagrams. The dependence on the largest and the second largest Lyapunov exponents, as a function of the magnitude and frequency of the applied magnetic field, and the relative distance between particles, is studied. The system presents multiple transitions between regular and chaotic behaviour depending on the control parameters. In particular, the system presents consistent hyper-chaotic states.

Palabras clave

Magnetisation dynamics; Dipolar interaction; Hyper-chaos

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