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首页> 外文期刊>Science Advances >Giant nonreciprocal emission of spin waves in Ta/Py bilayers
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Giant nonreciprocal emission of spin waves in Ta/Py bilayers

机译:Ta / Py双层中自旋波的巨大不可逆发射

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摘要

Spin waves are propagating disturbances in the magnetization of magnetic materials. One of their interesting properties is nonreciprocity, exhibiting that their amplitude depends on the magnetization direction. Nonreciprocity in spin waves is of great interest in both fundamental science and applications because it offers an extra knob to control the flow of waves for the technological fields of logics and switch applications. We show a high nonreciprocity in spin waves from Ta/Py bilayer systems with out-of-plane magnetic fields. The nonreciprocity depends on the thickness of Ta underlayer, which is found to induce an interfacial anisotropy. The origin of observed high nonreciprocity is twofold: different polarities of the in-plane magnetization due to different angles of canted out-of-plane anisotropy and the spin pumping effect at the Ta/Py interface. Our findings provide an opportunity to engineer highly efficient, nonreciprocal spin wave–based applications, such as nonreciprocal microwave devices, magnonic logic gates, and information transports.
机译:自旋波正在传播磁性材料的磁化扰动。它们的有趣特性之一是不可逆性,这表明它们的振幅取决于磁化方向。自旋波的不可逆性在基础科学和应用中都引起了极大的兴趣,因为它提供了一个额外的旋钮来控制逻辑和开关应用技术领域的波流。我们显示了来自Ta / Py双层系统的自旋波在平面外磁场中的高互易性。不可逆性取决于Ta底层的厚度,该厚度被发现会引起界面各向异性。观察到的高不可逆性的起因有两个:平面内磁化的极性不同,这归因于平面外各向异性的倾斜角度不同以及Ta / Py界面处的自旋泵浦效应。我们的发现为设计高效,不可逆的基于自旋波的应用程序提供了机会,例如不可逆的微波设备,电磁逻辑门和信息传输。

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