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Dynamics of spiral spin waves in magnetic nanopatches: Influence of thickness and shape

机译:磁纳瓦型螺旋自旋波的动态:厚度和形状的影响

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摘要

We explore the dynamics of spiral spin waves in permalloy nanoelements with variable aspect ratio of geometric dimensions, and their potential use as improved spin wave emitters with no or little biasing field required. Numerical results show that above a certain thickness, propagating spiral waves can be obtained in circular and square shaped elements in a flux closure state. VNA-FMR experiments on 20-nm (thin) and 80-nm (thick) samples confirm two type of spectra corresponding to different dispersions for thinner and thicker elements. We show that, for the thicker films, the vortex core region acts as a source of large amplitude spiral spin waves, which dominate over other modes. In case of the thinner elements, these modes are critically damped. For different shapes of the patch, we show that a rich collection of confined propagating modes can also be excited, modifying the final wave front and enriching the potential of the nanodot as a spin wave emitter. We give an explanation for the intense spiral modes from the perspective of a balance of dipolar and exchange energies in the sample.
机译:我们探讨了具有几何尺寸的可变纵横比的渗透组合纳米元件中螺旋旋转波的动态,以及它们的潜在用途,作为改进的旋转波发射器,没有必需的偏置场。数值结果表明,在一定厚度上方,在磁通闭合状态下可以在圆形和方形元件中获得传播螺旋波。在20-nm(薄)和80nm(厚)样品上的VNA-FMR实验证实了两种类型的光谱,对应于较薄和较厚的元件的不同分散体。我们表明,对于较厚的薄膜,涡旋核心区域充当大振幅旋转波的源,其占据在其他模式上。在较薄的元件的情况下,这些模式是严重阻尼的。对于不同形状的补丁,我们表明还可以兴奋地兴奋地收集狭窄的传播模式,修改最终波前并富有纳米液体的电位作为自旋波发射器。从样品中的偶极和交换能量的平衡的角度来看,对强烈的螺旋模式进行了解释。

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  • 来源
    《Physical review》 |2019年第21期|214437.1-214437.11|共11页
  • 作者单位

    Univ Exeter Dept Phys & Astron Exeter EX4 4QL Devon England;

    Univ Exeter Dept Phys & Astron Exeter EX4 4QL Devon England;

    Univ Exeter Dept Phys & Astron Exeter EX4 4QL Devon England;

    Univ Exeter Dept Phys & Astron Exeter EX4 4QL Devon England;

    Univ Autonoma Madrid Dept Fis Mat Condensada IFIMAC E-28049 Madrid Spain|Univ Autonoma Madrid INC E-28049 Madrid Spain;

    Univ Autonoma Madrid Dept Fis Mat Condensada IFIMAC E-28049 Madrid Spain|Univ Autonoma Madrid INC E-28049 Madrid Spain;

    Univ Exeter Dept Phys & Astron Exeter EX4 4QL Devon England;

    Univ Exeter Dept Phys & Astron Exeter EX4 4QL Devon England;

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