Mechanism for nonequilibrium symmetry breaking and pattern formation in magnetic films
J. M. Deutsch, Trieu Mai

TL;DR
This paper explains how disorder influences pattern formation and memory effects in magnetic films through finite temperature simulations, aligning well with recent x-ray speckle experimental results.
Contribution
It provides a comprehensive simulation-based explanation for experimental observations of symmetry breaking, pattern formation, and memory effects in disordered magnetic films.
Findings
Memory increases with film disorder.
Spontaneous growth of line-like domains at critical fields.
Correlation loss due to unstable domain growth sensitive to thermal noise.
Abstract
Magnetic thin films exhibit a strong variation in properties depending on their degree of disorder. Recent coherent x-ray speckle experiments on magnetic films have measured the loss of correlation between configurations at opposite fields and at the same field, upon repeated field cycling. We perform finite temperature numerical simulations on these systems that provide a comprehensive explanation for the experimental results. The simulations demonstrate, in accordance with experiments, that the memory of configurations increases with film disorder. We find that non-trivial microscopic differences exist between the zero field spin configuration obtained by starting from a large positive field and the zero field configuration starting at a large negative field. This seemingly paradoxical beahvior is due to the nature of the vector spin dynamics and is also seen in the experiments. For…
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