耦合铁磁石榴石异质结构中的增强型自旋泵浦

IF 3.5 2区 物理与天体物理 Q2 PHYSICS, APPLIED Applied Physics Letters Pub Date : 2024-07-03 DOI:10.1063/5.0201938
Anupama Swain, Kshitij Singh Rathore, Pushpendra Gupta, Abhisek Mishra, Yong Heng Lee, Jinho Lim, Axel Hoffmann, Ramanathan Mahendiran, Subhankar Bedanta
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引用次数: 0

摘要

自旋泵对自旋电子学具有重大意义,它为信息处理提供了一种操纵和传输自旋的机制。通过自旋泵了解和利用自旋电流对于开发高效的自旋电子器件至关重要。使用具有低阻尼的磁绝缘体可以提高自旋扭矩铁磁共振(FMR)和自旋泵等关键实验的信噪比。与重金属或量子材料耦合的磁绝缘体提供了一个更简单的模型系统,尤其是在研究自旋电荷相互转换过程时,其精确度更高。与铁磁性金属不同的是,磁绝缘体不存在传导电子引起的不需要的效应,因此具有这种简单性。在这里,我们利用反向自旋霍尔效应研究了与重金属(铂)结合的耦合铁磁性(FiM)Y3Fe5O12 (YIG)/Tm3Fe5O12 (TmIG)双层膜中的自旋泵。研究观察到,磁子传输发生在两个 FiMs 调变位置。在 FiM 石榴石异质结构中观察到自旋泵浦电压(Vsp)的增强。Vsp 的调节是通过调整双层结构实现的。此外,我们还发现这些耦合系统的自旋混合电导率≈1018 m-2。我们的研究结果描述了一种用于研究磁子耦合的耦合 FiM 系统,为磁子器件提供了机会。
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Enhanced spin pumping in heterostructures of coupled ferrimagnetic garnets
Spin pumping has significant implications for spintronics, providing a mechanism to manipulate and transport spins for information processing. Understanding and harnessing spin currents through spin pumping is critical for the development of efficient spintronic devices. The use of a magnetic insulator with low damping enhances the signal-to-noise ratio in crucial experiments such as spin-torque ferromagnetic resonance (FMR) and spin pumping. A magnetic insulator coupled with a heavy metal or quantum material offers a more straightforward model system, especially when investigating spin-charge interconversion processes to greater accuracy. This simplicity arises from the absence of unwanted effects caused by conduction electrons unlike in ferromagnetic metals. Here, we investigate the spin pumping in coupled ferrimagnetic (FiM) Y3Fe5O12 (YIG)/Tm3Fe5O12 (TmIG) bilayers combined with heavy-metal (Pt) using the inverse spin Hall effect. It is observed that magnon transmission occurs at both of the FiMs FMR positions. The enhancement of spin pumping voltage (Vsp) in the FiM garnet heterostructures is observed. The plausible reason might be the interfacial exchange coupling between FiMs. The modulation of Vsp is achieved by tuning the bilayer structure. Further, the spin mixing conductance for these coupled systems is found to be ≈1018 m−2. Our findings describe a coupled FiM system for the investigation of magnon coupling providing opportunities for magnonic devices.
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来源期刊
Applied Physics Letters
Applied Physics Letters 物理-物理:应用
CiteScore
6.40
自引率
10.00%
发文量
1821
审稿时长
1.6 months
期刊介绍: Applied Physics Letters (APL) features concise, up-to-date reports on significant new findings in applied physics. Emphasizing rapid dissemination of key data and new physical insights, APL offers prompt publication of new experimental and theoretical papers reporting applications of physics phenomena to all branches of science, engineering, and modern technology. In addition to regular articles, the journal also publishes invited Fast Track, Perspectives, and in-depth Editorials which report on cutting-edge areas in applied physics. APL Perspectives are forward-looking invited letters which highlight recent developments or discoveries. Emphasis is placed on very recent developments, potentially disruptive technologies, open questions and possible solutions. They also include a mini-roadmap detailing where the community should direct efforts in order for the phenomena to be viable for application and the challenges associated with meeting that performance threshold. Perspectives are characterized by personal viewpoints and opinions of recognized experts in the field. Fast Track articles are invited original research articles that report results that are particularly novel and important or provide a significant advancement in an emerging field. Because of the urgency and scientific importance of the work, the peer review process is accelerated. If, during the review process, it becomes apparent that the paper does not meet the Fast Track criterion, it is returned to a normal track.
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