论文标题

在磁性金属构造杂种结构中操纵耦合和镁传输

Manipulation of coupling and magnon transport in magnetic metal-insulator hybrid structures

论文作者

Fan, Yabin, Quarterman, Patrick, Finley, Joseph, Han, Jiahao, Zhang, Pengxiang, Hou, Justin T., Stiles, Mark D., Grutter, Alexander J., Liu, Luqiao

论文摘要

铁磁金属和绝缘子被广泛用于生成,控制和检测镁旋转信号。大多数镁质结构主要基于磁绝缘子或铁磁金属,而整合两者的异质结构的探索较少。在这里,通过在SI底物上引入PT/YTTRIUM铁石榴石(YIG)/Permalloy(Py)混合结构,我们研究了横跨两个磁层界面的磁耦合和镁透射率。我们发现,在这种结构中,PY和YIG表现出抗磁磁耦合场的强度,高达150吨,这是通过振动样本磁力测定法和偏振中子反射测量测量结果所证明的。通过控制各个层厚度和外部磁场,我们实现了平行和反平行的磁化配置,这些配置被进一步用于控制磁通电流的传输。我们表明,通过自旋泵送和自旋seebeck效应实验,可以从室温下的多层结构中实现〜130%的镁旋转阀。得益于对磁通电流的有效控制以及与SI技术的兼容性,PT/YIG/PY混合结构可以潜在地找到基于木元的逻辑和内存设备中的应用。

Ferromagnetic metals and insulators are widely used for generation, control and detection of magnon spin signals. Most magnonic structures are based primarily on either magnetic insulators or ferromagnetic metals, while heterostructures integrating both of them are less explored. Here, by introducing a Pt/yttrium iron garnet (YIG)/permalloy (Py) hybrid structure grown on Si substrate, we studied the magnetic coupling and magnon transmission across the interface of the two magnetic layers. We found that within this structure, Py and YIG exhibit an antiferromagnetic coupling field as strong as 150 mT, as evidenced by both the vibrating-sample magnetometry and polarized neutron reflectometry measurements. By controlling individual layer thicknesses and external fields, we realize parallel and antiparallel magnetization configurations, which are further utilized to control the magnon current transmission. We show that a magnon spin valve with an ON/OFF ratio of ~130% can be realized out of this multilayer structure at room temperature through both spin pumping and spin Seebeck effect experiments. Thanks to the efficient control of magnon current and the compatibility with Si technology, the Pt/YIG/Py hybrid structure could potentially find applications in magnon-based logic and memory devices.

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