论文标题

铂薄膜中的弱抗静脉化效应揭示了多频带特征

Multi-band character revealed from Weak-antilocalization effect in Platinum thin films

论文作者

Jana, Subhadip, Senapati, T., Senapati, K., Samal, D.

论文摘要

由于铂(PT)的固有性自旋轨道相互作用很大,铂(PT)已被用于自旋式转换。磁导量源自量子干扰方案中的弱抗静脉化效应,用作获得旋转轨道相互作用和静脉电子之间的旋转轨道相互作用和相干相位散射过程的显微镜信息的强大工具。为了获取不同类型的散射过程的知识,我们对PT薄膜进行了磁性研究,以表现出多波段(多通道)传导。对量子干扰的广泛分析起源于弱抗静脉化作用,揭示了两个相似(不同)轨道之间强(弱)频段散射的存在。发现这两个导电带的相干相断裂长度($ l_ϕ $)及其温度依赖性有显着差异。观察到的效果与理论上的预测一致,即存在三个Fermi表,其中有一个$ s $和两个$ d $ orbital字符。这项研究提供了两个独立的非相似导电通道以及各向异性自旋轨道相互作用以及PT薄膜中$ e $ - $ e $相关性的证据。

Platinum (Pt) has been very much used for spin-charge conversion in spintronics research due to it's large intrinsic spin-orbit interaction. Magnetoconductance originated from weak-antilocalization effect in quantum interference regime is used as a powerful tool to obtain the microscopic information of spin-orbit interaction and coherence phase breaking scattering process among itinerant electrons. To acquire the knowledge of different types of scattering processes, we have performed magnetoconductance study on Pt thin films which manifests multi-band (multi-channel) conduction. An extensive analysis of quantum interference originated weak-antilocalization effect reveals the existence of strong (weak) inter-band scattering between two similar (different) orbitals. Coherence phase breaking lengths ($l_ϕ$) and their temperature dependence are found to be significantly different for these two conducting bands. The observed effects are consistent with theoretical predication that there exist three Fermi-sheets with one $s$ and two $d$ orbital character. This study provides the evidence of two independent non-similar conducting channels and presence of anisotropic spin-orbit interaction along with $e$-$e$ correlation in Pt thin films.

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