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首页> 外文期刊>Physical review, B >Toward nonlinear magnonics: Intensity-dependent spin-wave switching in insulating side-coupled magnetic stripes
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Toward nonlinear magnonics: Intensity-dependent spin-wave switching in insulating side-coupled magnetic stripes

机译:朝向非线性氧化物:绝缘侧耦合磁条中的强度依赖性旋转波切换

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We demonstrate that the nonlinear spin-wave transport in two laterally parallel magnetic stripes exhibit the intensity-dependent power exchange between the adjacent spin-wave channels. By the means of Brillouin light scattering technique, we investigate collective nonlinear spin-wave dynamics in the presence of magnetodipolar coupling. The nonlinear intensity-dependent effect reveals itself in the spin-wave mode transformation and differential nonlinear spin-wave phase shift in each adjacent magnetic stripe. The proposed analytical theory, based on the coupled Ginzburg-Landau equations, predicts the geometry design involving the reduction of power requirement to the all-magnonic switching. A very good agreement between calculation and experiment was found. In addition, a micromagnetic and finite-element approach has been independently used to study the nonlinear behavior of spin waves in adjacent stripes and the nonlinear transformation of spatial profiles of spin-wave modes. Our results show that the proposed spin-wave coupling mechanism provides the basis for nonlinear magnonic circuits and opens the perspectives for all-magnonic computing architecture.
机译:我们证明,两个横向平行磁条中的非线性旋转波传输在相邻的旋转波通道之间表现出强度依赖的功率交换。通过布里渊光散射技术的方法,我们在存在磁铁二极耦合时调查集体非线性旋转波动态。非线性强度依赖性效果揭示了在每个相邻磁条中的旋转波模式变换和差分非线性旋转波相移。基于耦合的Ginzburg-Landau方程,所提出的分析理论预测了涉及减少电力要求对全磁力开关的几何设计。发现计算和实验之间的一致性吻合。此外,微磁性和有限元方法已经独立地用于研究相邻条纹中的旋转波的非线性行为和旋转波模式的空间轮廓的非线性变换。我们的研究结果表明,所提出的旋转波耦合机构为非线性磁力电路提供了基础,并打开了全千克计算架构的视角。

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