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Exchange Bias and Its Phase Reversal in Zero Magnetization Admixed Rare-Earth Intermetallics

机译:零磁化混合稀土金属间化合物的交换偏置及其相变

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The exchange bias effect-an important attribute in many device applications- is traditionally discussed as a form of exchange anisotropy at the interface between the ferromagnetic/antiferromagnetic layers of two distinct systems. We report here on magnetically ordered alloys possessing the feature of unidirectional anisotropy that reverses its sign at a characteristic temperature. These alloys are admixed rare-earth (RE) intermetallics, comprising two dissimilar rare-earth ions, belonging to the two different halves of the 4f series. All 4f rare-earth ions exhibit ferromagnetic coupling between the spins of their ions and the conduction electrons. Magnetic moments of dissimilar RE ions in such admixed alloys, however, get antiferromagnetically coupled, and they display a magnetic compensation feature in which the field-induced reversal in the orientation of the magnetic moments of dissimilar rare-earth ions occurs at the compensation temperature (T comp). Above a threshold field, the conduction electron polarization also reverses its sign at T comp. We suggest that this effect correlates with the observed phase reversal in the exchange bias field.
机译:传统上将交换偏置效应(在许多设备应用中的重要属性)作为交换各向异性的一种形式讨论,该交换各向异性是两个不同系统的铁磁/反铁磁层之间的界面。我们在这里报告的磁有序合金具有单向各向异性的特征,该特征在特征温度下会反转其符号。这些合金是混合稀土金属(RE)金属间化合物,包含两个不同的稀土离子,分别属于4f系列的两个半部分。所有4f稀土离子在其离子的自旋与传导电子之间均表现出铁磁耦合。然而,这种混合合金中异种RE离子的磁矩反铁磁耦合,并且它们表现出磁补偿特征,其中在补偿温度下,磁场诱导的异种稀土离子的磁矩取向发生反转( T comp)。在阈值场以上,传导电子极化也会在T comp处反转其符号。我们建议,这种影响与在交换偏置场中观察到的相位反转有关。

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