Influence of the driving mechanism on the response of systems with athermal dynamics: The example of the random-field Ising model

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Abstract

We investigate the influence of the driving mechanism on the hysteretic response of systems with athermal dynamics. In the framework of local mean-field theory at finite temperature (but neglecting thermally activated processes), we compare the rate-independent hysteresis loops obtained in the random field Ising model when controlling either the external magnetic field H or the extensive magnetization M. Two distinct behaviors are observed, depending on disorder strength. At large disorder, the H -driven and M -driven protocols yield identical hysteresis loops in the thermodynamic limit. At low disorder, when the H -driven magnetization curve is discontinuous (due to the presence of a macroscopic avalanche), the M -driven loop is reentrant while the induced field exhibits strong intermittent fluctuations and is only weakly self-averaging. The relevance of these results to the experimental observations in ferromagnetic materials, shape memory alloys, and other disordered systems is discussed. © 2006 The American Physical Society.

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Illa, X., Rosinberg, M. L., & Vives, E. (2006). Influence of the driving mechanism on the response of systems with athermal dynamics: The example of the random-field Ising model. Physical Review B - Condensed Matter and Materials Physics, 74(22). https://doi.org/10.1103/PhysRevB.74.224403

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