论文标题

抗铁磁铁中各向异性

Anisotropy in Antiferromagnets

论文作者

O'Grady, K, Sinclair, J, Elphick, K, Carpenter, R, Vallejo-Fernandez, G, Probert, M I J, Hirohata, A

论文摘要

由于反铁磁(AF)Spintronics的出现,人们对AF材料的兴趣迅速,可用于广泛的潜在和实际应用。通常,AF是通过在Neel温度(TN)处的排序来表征的,但是要具有稳定的AF构型,必须具有足够的各向异性水平,以维持固定在一个方向上的给定磁态的方向。与铁磁体的情况不同,关于AFS的各向异性,尤其是其起源及其控制它的因素,几乎没有建立的数据。在本文中,根据最近和已建立的实验数据对这些因素进行了审查。此外,没有公认的技术来首先确定AF的各向异性,只能通过交换偏置现象间接找到。审查了该技术,尤其是对测量和分布的各向异性性质的影响。最后,提出了一项策略,该策略将允许开发具有对未来应用的控制的各向异性的AF材料。

Due to the advent of antiferromagnetic (AF) spintronics there is a burgeoning interest in AF materials for a wide range of potential and actual applications. Generally, AFs are characterized via the ordering at the Neel temperature (TN) but, to have a stable AF configuration, it is necessary that the material have a sufficient level of anisotropy so as to maintain the orientation of the given magnetic state fixed in one direction. Unlike the case for ferromagnets there is little established data on the anisotropy of AFs and in particular its origins and those factors which control it. In this paper these factors are reviewed in the light of recent and established experimental data. Additionally, there is no recognized technique for the first principle determination of the anisotropy of an AF which can only be found indirectly via the exchange bias phenomenon. This technique is reviewed and in particular the implications for the nature of the anisotropy that is measured and its distribution. Finally, a strategy is proposed that would allow for the development of AF materials with controlled anisotropy for future applications.

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