在不同氧压条件下优化钇铁石榴石/铂双层膜中的自旋泵

IF 2.5 3区 材料科学 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY Journal of Magnetism and Magnetic Materials Pub Date : 2024-10-02 DOI:10.1016/j.jmmm.2024.172572
Zeinab Harajli, Samih Isber, Mohammad Haidar
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引用次数: 0

摘要

在此,我们研究了磁性能对钇铁石榴石/铂(YIG/Pt)双层自旋泵效应的影响。YIG 薄膜是在不同氧气压力下通过脉冲激光沉积法沉积而成的。利用宽带铁磁共振技术测量了 YIG 薄膜的磁性能。我们通过测量有铂层和无铂层样品的阻尼变化,分析了这些薄膜中的自旋泵效应,从而计算出了自旋混合电导。实验结果表明,在高氧压下制备的薄膜磁化率较低,自旋泵效应 αsp 减少,从而导致自旋混合电导 g↑↓ 下降。我们报告的 g↑↓ 变化范围为 4.2×1018 到 15.6×1018,m-2。这些发现强调了在基于 YIG 的自旋电子器件中,自旋传输特性对沉积参数的敏感性。
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Optimizing spin pumping in Yttrium Iron Garnet/Platinum bilayers under varying oxygen pressure
Here, we study the influence of magnetic properties on the spin-pumping effect of the Yttrium Iron Garnet/Platinum (YIG/Pt) bilayer. YIG films were deposited by pulsed laser deposition under variable oxygen pressures. Using broadband ferromagnetic resonance techniques, the magnetic properties of the YIG films were measured. We analyzed the spin-pumping effect in these films by measuring damping changes in samples with and without Pt layers, enabling the calculation of spin-mixing conductance. Experimental results show that films prepared at high oxygen pressure exhibit lower magnetization and reduced spin pumping, αsp, leading to a decreased spin mixing conductance, g. We report a variation in g ranging from 4.2×1018 to 15.6×1018,m2. These findings underscore the sensitivity of spin transport properties to deposition parameters in YIG-based spintronic devices.
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来源期刊
Journal of Magnetism and Magnetic Materials
Journal of Magnetism and Magnetic Materials 物理-材料科学:综合
CiteScore
5.30
自引率
11.10%
发文量
1149
审稿时长
59 days
期刊介绍: The Journal of Magnetism and Magnetic Materials provides an important forum for the disclosure and discussion of original contributions covering the whole spectrum of topics, from basic magnetism to the technology and applications of magnetic materials. The journal encourages greater interaction between the basic and applied sub-disciplines of magnetism with comprehensive review articles, in addition to full-length contributions. In addition, other categories of contributions are welcome, including Critical Focused issues, Current Perspectives and Outreach to the General Public. Main Categories: Full-length articles: Technically original research documents that report results of value to the communities that comprise the journal audience. The link between chemical, structural and microstructural properties on the one hand and magnetic properties on the other hand are encouraged. In addition to general topics covering all areas of magnetism and magnetic materials, the full-length articles also include three sub-sections, focusing on Nanomagnetism, Spintronics and Applications. The sub-section on Nanomagnetism contains articles on magnetic nanoparticles, nanowires, thin films, 2D materials and other nanoscale magnetic materials and their applications. The sub-section on Spintronics contains articles on magnetoresistance, magnetoimpedance, magneto-optical phenomena, Micro-Electro-Mechanical Systems (MEMS), and other topics related to spin current control and magneto-transport phenomena. The sub-section on Applications display papers that focus on applications of magnetic materials. The applications need to show a connection to magnetism. Review articles: Review articles organize, clarify, and summarize existing major works in the areas covered by the Journal and provide comprehensive citations to the full spectrum of relevant literature.
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