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Spin reorientation, normal and inverse magnetocaloric effects in heavy rare-earth iron garnets

机译:重型稀土铁石榴石中的旋转重新定位,正常和逆磁热效应

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摘要

Experiments for heavy rare-earth iron garnets Ho3Fe5O12 and Er3Fe5O12 show a compensation effect characterized by a near zero magnetization at 134 K and 80 K, respectively. The magnetic entropy change calculated according to the Maxwell's relation is shown to be positive and negative, indicating both normal and inverse magnetocaloric effects exist in the sample. The critical temperature (134 K for Ho3Fe5O12, 80 K for Er3Fe5O12) of the two types of magnetocaloric effect occurs at almost the same temperature as the compensation point. However, the compensation effect is attributed to the multiple exchange interactions among the octahedral sites Fe3+, the tetrahedral sites Fe3+ and the dodecahedral sites R3+, while the reversal of the magnetocaloric effect is originated from the spin reorientation. The maximum magnetic entropy change of the normal magnetocaloric effect is 4.72 J kg(-1) K-1 for Ho3Fe5O12 at 34 K and 4.94 J kg(-1) K-1 for Er3Fe5O12 at 24 K, respectively. Moreover, all the positive slopes of basic Arrott plots suggest only the second-order phase transition existing in Ho3Fe5O12 and Er3Fe5O12.
机译:重型稀土铁石榴石HO3FE5O12和ER3FE5O12的实验表明,分别以134k和80k的近零磁化为特征的补偿效果。根据Maxwell关系计算的磁熵变化显示为正且阴性,表明样品中存在正常和逆磁热效果。两种类型的磁热效应的临界温度(用于HO3FE5O12,80k的HO3FE5O12,80K)发生在几乎与补偿点的温度几乎相同。然而,补偿效果归因于八面体位点Fe3 +之间的多种交换相互作用,四面体位点Fe3 +和十二次左右地点R3 +,而磁热效应的逆转源于旋转重新定位。正常磁热效应的最大磁熵变化为24k和4.94J kg(-1)k-1的HO3FE5O12分别为24k的4.72J kg(-1)k-1,分别为24k。此外,基本arrott图的所有正斜率仅表明了HO3FE5O12和ER3FE5O12中存在的二阶相转变。

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