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Influence of the Magnetic State on the Chemical Order-Disorder Transition Temperature in Fe-Ni Permalloy

机译:磁态对Fe-Ni坡莫合金化学级 - 转变温度的影响

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摘要

In magnetic alloys, the effect of finite temperature magnetic excitations on phase stability below the Curie temperature is poorly investigated, although many systems undergo phase transitions in this temperature range. We consider random Ni-rich Fe-Ni alloys, which undergo chemical order-disorder transition approximately 100 K below their Curie temperature, to demonstrate from ab initio calculations that deviations of the global magnetic state from ideal ferromagnetic order due to temperature induced magnetization reduction have a crucial effect on the chemical transition temperature. We propose a scheme where the magnetic state is described by partially disordered local magnetic moments, which in combination with Heisenberg Monte Carlo simulations of the magnetization allows us to reproduce the transition temperature in good agreement with experimental data.
机译:在磁性合金中,尽管在此温度范围内许多系统会发生相变,但对居里温度以下的有限温度磁激发对相稳定性的影响却很少进行研究。我们认为随机富镍的Fe-Ni合金会在居里温度以下大约100 K发生化学有序无序过渡,从头算起就证明了由于温度引起的磁化强度降低,整体磁态与理想铁磁有序之间的偏差对化学转变温度的关键影响。我们提出了一种通过局部无序局部磁矩来描述磁状态的方案,该方案与磁化的海森堡蒙特卡洛模拟相结合,使我们能够再现与实验数据高度吻合的转变温度。

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