论文标题
Cafe2O4中的不寻常的铁磁性
Unusual ferrimagnetism in CaFe2O4
论文作者
论文摘要
分线反平行旋转的不完全取消会导致铁磁性。即使相反极化的旋转是由于具有相同价态的单个磁元素的相等数量,但原则上,宿主离子的晶体不等性仍然可能引起铁磁状态。但是,由于M的预期幅度很小,并且需要将相似的磁位点区分相似的磁位点,因此对铁磁性状态的实验鉴定并不简单。我们报告了Cafe2O4外延膜上的Fe L2,3边缘的基于同步加速器的谐振X射线研究,该膜表现出两个具有相似能量的磁相。我们发现,虽然Cafe2O4的一个相是抗磁磁性的,但另一种是铁磁性的,其反平行排列在两个具有非常相似局部协调环境的不同晶体学位上的旋转数量相等。我们的结果进一步表明了整个分钟M的两个不同起源。一个是固有的,来自不同的Fe3+位点,另一个是外在的,是由Fe2+有缺陷的可能形成弱耦合的铁磁性簇引起的。这两个起源是不相关的,并且具有非常不同的强制场。因此,这项工作仅是由于Fe3+作为Cafe2O4弱M的起源而直接证明了铁磁性的直接实验证明。
Incomplete cancellation of collinear antiparallel spins gives rise to ferrimagnetism. Even if the oppositely polarized spins are owing to the equal number of a single magnetic element having the same valence state, in principle, a ferrimagnetic state can still arise from the crystallographic inequivalence of the host ions. However, experimental identification of such a state as ferrimagnetic is not straightforward because of the tiny magnitude expected for M and the requirement for a sophisticated technique to differentiate similar magnetic sites. We report a synchrotron-based resonant x-ray investigation at the Fe L2,3 edges on an epitaxial film of CaFe2O4, which exhibits two magnetic phases with similar energies. We find that while one phase of CaFe2O4 is antiferromagnetic, the other one is ferrimagnetic with an antiparallel arrangement of an equal number of spins between two distinct crystallographic sites with very similar local coordination environments. Our results further indicate two distinct origins of an overall minute M; one is intrinsic, from distinct Fe3+ sites, and the other one is extrinsic, arising from defective Fe2+ likely forming weakly-coupled ferrimagnetic clusters. These two origins are uncorrelated and have very different coercive fields. Hence, this work provides a direct experimental demonstration of ferrimagnetism solely due to crystallographic inequivalence of the Fe3+ as the origin of the weak M of CaFe2O4.