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- W2108339675 abstract "Training of the exchange bias effect in antiferro-/ferromagnetic heterostructures is considered in the theoretical framework of spin configurational relaxation, which is activated through consecutively cycled hysteresis loops. The corresponding exchange bias fields, ${ensuremath{mu}}_{0}{H}_{text{EB}}(n)$, reveal relaxation from the initial state, $n=1$, of high antiferromagnetic interface magnetization to the equilibrium state of reduced magnetization in the limit of large $n$. The evolution of ${ensuremath{mu}}_{0}{H}_{text{EB}}$ vs $n$ is calculated with the help of a discretized Landau-Khalatnikov equation, where the continuous time parameter is replaced by the loop index $n$. The result reveals the origin of the well established but hitherto unexplained power-law decay of ${ensuremath{mu}}_{0}{H}_{text{EB}}(n)$ for $n>1$. Moreover, in contrast with the breakdown of the power-law behavior at $n=1$, the relaxation approach describes the training effect for $nensuremath{geqslant}1$. The full capability of the theory is explored in comparison with experimental results obtained recently on a $mathrm{NiO}(001)∕mathrm{Fe}(110)$ heterostructure." @default.
- W2108339675 created "2016-06-24" @default.
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- W2108339675 date "2004-07-20" @default.
- W2108339675 modified "2023-10-11" @default.
- W2108339675 title "Training of the exchange-bias effect: A simple analytic approach" @default.
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- W2108339675 doi "https://doi.org/10.1103/physrevb.70.014421" @default.
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