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首页> 外文期刊>Journal of Applied Physics >Phase ordering and its effect on magnetic and structural properties of FeRh ultrathin films
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Phase ordering and its effect on magnetic and structural properties of FeRh ultrathin films

机译:FeRh超薄膜的相序及其对磁性和结构性能的影响

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Applications using FeRh for controllable exchange coupling of two magnetic layers with in-plane and out-of-plane anisotropies require ultrathin (∼10 nm) films with pure antiferromagnetic (AF) FeRh α″ phase at room temperature (RT). However, it is also well known that the antiferromagnetic-ferromagnetic (AF-FM) transition of FeRh is sensitive to composition and deteriorates at low thicknesses. Hence, in this work, we study the composition-dependent phase ordering of co-sputtered FeRh thin films at ultrathin thicknesses of ∼10 nm. As the ultrathin films get richer in Rh, the appearance of α″ phase is typically characterized magnetically by a sudden drop in RT moment, and structurally by a slight decrease in degree of B2 chemical ordering with a sharp decrease in c-axis lattice constant. These observations are consistent with the FeRh phase diagram where FeRh abruptly enters the AF α″ phase once it becomes slightly disordered. Dependences of magnetic transition parameters on composition were also described. Moreover, higher sputtering powers possibly allow the formation of purer α″ phase with less γ-face centered cubic phase impurities. Consequently, a composition optimized 10 nm film shows a relatively low residual moment (13.5 emu/cc), thus suggesting good AF phase formation. In addition, correlation of the magnetic transition parameters with the crystal structural parameters reveal that the maximum rate of AF-FM transition (Rmax,h) and the corresponding total change in magnetization (ΔMh) interestingly shows linear dependence on the c-axis lattice constant, but would depart from this linearity under certain conditions, i.e., when grain sizes were large, crystallinity was improved and Fe content was high.
机译:使用FeRh进行具有平面内和平面外各向异性的两个磁性层的可控交换耦合的应用要求在室温(RT)下具有纯反铁磁(AF)FeRhα''相的超薄(〜10 nm)薄膜。但是,众所周知,FeRh的反铁磁-铁磁(AF-FM)转变对组成敏感,并且在低厚度时会劣化。因此,在这项工作中,我们研究了共溅射FeRh薄膜在约10 nm的超薄厚度下与成分有关的相序。随着超薄膜中Rh含量的增加,α''相的出现通常在磁性上以RT矩的突然下降为特征,在结构上以B2化学有序度略有下降,而c轴晶格常数急剧下降为特征。这些观察结果与FeRh相图一致,在FeRh相图中,FeRh一旦变得无序,就会突然进入AFα''相。还描述了磁转变参数对组成的依赖性。此外,较高的溅射功率可能允许形成具有较少γ面中心立方相杂质的纯α''相。因此,经过成分优化的10 nm薄膜显示出相对较低的残留力矩(13.5 emu / cc),因此表明形成了良好的AF相。此外,磁跃迁参数与晶体结构参数的相关性表明,AF-FM跃迁的最大速率(R max,h )和相应的磁化强度总变化(ΔM h )有趣地显示出对c轴晶格常数的线性依赖性,但是在某些条件下会偏离该线性度,即,当晶粒大时,结晶度得到改善,Fe含量高。

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