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Cooling behaviour of partial thermoremanences induced in multidomain magnetite

机译:多畴磁铁矿中部分热剩磁的冷却行为

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摘要

The cooling behaviour of partial thermoremanences (pTRMs) below the acquisition temperature (T_2) is reported for the first time for well defined, sized, synthetic multidomain magnetite samples produced by hydrothermal recrystallisation. The pTRM cooling behaviour of low-stress magnetite samples is similar but not identical to that reported for higher stress crushed magnetite samples, that is, it displays a decrease in pTRM on cooling below T_2, indicating domain re-organisation. This agrees with recent kinetic theories and domain observations, but strongly disagrees with the classical hysteretic models based on Neel's ideas which assume that the remanence increases with the increase in spontaneous magnetisation. It is demonstrated that the rate of decrease in remanence on cooling is not a viscous effect, and the rate of decrease increases with inducing field dependency. pTRM acquired from the Curie temperature T_c (pTRM_(T_2)~(T_c)) is found to be more stable to cooling than pTRM acquired from a temperature T_1 which is less than T_c (pTRM_(T_2)~(T_1)). It is suggested that for low-stress samples, pTRM acquired at high temperatures has a wider range of metastable stable states available than pTRM acquired at lower temperatures. The results support the theories that domain wall nucleation is relatively easy during cooling. Differences between the cooling behaviour of the low-stress samples and those previously published for crushed magnetite samples can be attributed to differences in the dislocation densities and the available metastable domain states.
机译:首次报道了通过水热重结晶生产的定义明确,尺寸大小合适的合成多畴磁铁矿样品的低于获取温度(T_2)的部分热剩磁(pTRM)的冷却行为。低应力磁铁矿样品的pTRM冷却行为与高应力压碎磁铁矿样品的pTRM冷却行为相似但不相同,也就是说,当冷却到T_2以下时,pTRM会降低pTRM,表明磁畴重组。这与最新的动力学理论和磁畴观测相吻合,但与基于Neel思想的经典磁滞模型完全不同,后者认为剩磁会随着自发磁化强度的增加而增加。已经证明,冷却时剩磁的降低速率不是粘性效应,并且降低速率随着诱导场依赖性而增加。发现从居里温度T_c(pTRM_(T_2)〜(T_c))获取的pTRM比从温度T_1小于T_c(pTRM_(T_2)〜(T_1))获取的pTRM更稳定。建议对于低应力样品,与在较低温度下采集的pTRM相比,在高温下采集的pTRM具有更广泛的亚稳态稳态。结果支持了在冷却过程中畴壁成核相对容易的理论。低应力样品的冷却行为与先前公布的压碎磁铁矿样品的冷却行为之间的差异,可归因于位错密度和可用的亚稳态畴状态的差异。

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