论文标题
外延Cafe2O4薄膜的结构和磁性
Structure and magnetic properties of epitaxial CaFe2O4 thin films
论文作者
论文摘要
Cafe2O4是一种高度各向异性的抗铁磁铁,据报道显示两种旋转布置,上下倒下(A阶段A)和上下降(B期)配置。这些阶段的相对稳定性由在两个不同环境中排列的Fe3+旋转之间的竞争铁磁和抗铁磁相互作用所统治,但是对该材料的磁结构的完全理解尚不存在。在这项研究中,我们研究了通过脉冲激光沉积(PLD)在TIO2(110)底物上生长的外延CAFE2O4薄膜。结构表征揭示了两个平面外晶体方向的共存以及三个面向内向的域的形成。在宏观上和局部研究了膜的磁性特性,包括高度敏感的摩斯鲍尔光谱,揭示了仅存在一个阶参数的存在,显示了远程订购量低于t = 185 K以及过渡的临界性质。此外,发现非零的面内磁化,这与针对散装样品所提出的相位或域边界处的无补偿旋转一致。
CaFe2O4 is a highly anisotropic antiferromagnet reported to display two spin arrangements with up-up-down-down (phase A) and up-down-up-down (phase B) configurations. The relative stability of these phases is ruled by the competing ferromagnetic and antiferromagnetic interactions between Fe3+ spins arranged in two different environments, but a complete understanding of the magnetic structure of this material does not exist yet. In this study we investigate epitaxial CaFe2O4 thin films grown on TiO2 (110) substrates by means of Pulsed Laser Deposition (PLD). Structural characterization reveals the coexistence of two out-of-plane crystal orientations and the formation of three in-plane oriented domains. The magnetic properties of the films, investigated macroscopically as well as locally, including highly sensitive Mossbauer spectroscopy, reveal the presence of just one order parameter showing long-range ordering below T = 185 K and the critical nature of the transition. In addition, a non-zero in-plane magnetization is found, consistent with the presence of uncompensated spins at phase or domain boundaries, as proposed for bulk samples.