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Mode conversion from quantized to propagating spin waves in a rhombic antidot lattice supporting spin wave nanochannels

机译:在支持自旋波纳米通道的菱形解毒点阵中,模式从量化的自旋波转换为传播的自旋波

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摘要

We report spin wave excitations in a nanopatterned antidot lattice fabricated from a 30-nm thick Ni_(80)Fe_2o film. The 250-nm-wide circular holes are arranged in a rhombic unit cell with a lattice constant of 400 nm. By Brillouin light scattering, we find that quantized spin wave modes transform to propagating ones and vice versa by changing the in-plane orientation of the applied magnetic field H by 30°. Spin waves of either negative or positive group velocity are found. In the latter case, they propagate in narrow channels exhibiting a width of below 100 nm. We use the plane wave method to calculate the spin wave dispersions for the two relevant orientations of H. The theory allows us to explain the wave-vector-dependent characteristics of the prominent modes. Allowed minibands are formed for selected modes only for specific orientations of H and wave vector. The results are important for applications such as spin wave filters and interconnected waveguides in the emerging field of magnonics where the control of spin wave propagation on the nanoscale is key.
机译:我们报道了由30纳米厚的Ni_(80)Fe_2o薄膜制成的纳米图案的点阵晶格中的自旋波激发。宽250 nm的圆形孔排列在菱形晶胞中,其晶格常数为400 nm。通过布里渊光散射,我们发现,通过将施加磁场H的面内方向更改30°,可以将量化的自旋波模式转换为传播模式,反之亦然。发现负或正群速度的自旋波。在后一种情况下,它们在宽度小于100 nm的狭窄通道中传播。我们使用平面波方法来计算H的两个相关方向的自旋波频散。该理论使我们能够解释突出模式的波矢量相关特性。仅针对H和波矢的特定方向,为所选模式形成允许的微带。这些结果对于新兴的马格尼克学领域中的自旋波滤波器和互连波导等应用非常重要,在这些领域中,控制纳米级自旋波的传播至关重要。

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  • 来源
    《Physical review》 |2012年第1期|p.014417.1-014417.12|共12页
  • 作者单位

    CNISM, Unita di Perugia - Dipartimento di Fisica, Via A. Pascoli, 1-06123 Perugia, Italy;

    Lehrstuhl fuer Physikfunktionaler Schichtsysteme, Physik Department, Technische Universitdt MUnchen, James-Franck-Str. 1, D-85747Garching b. MUnchen, Germany;

    CNISM, Unita di Perugia - Dipartimento di Fisica, Via A. Pascoli, 1-06123 Perugia, Italy;

    Faculty of Physics, Adam Mickiewicz University, Umultowska 85, Poznari, 61-614, Poland;

    Faculty of Physics, Adam Mickiewicz University, Umultowska 85, Poznari, 61-614, Poland;

    Faculty of Physics, Adam Mickiewicz University, Umultowska 85, Poznari, 61-614, Poland;

    CNISM, Unita di Perugia - Dipartimento di Fisica, Via A. Pascoli, 1-06123 Perugia, Italy IOM-CNR, Via Pascoli, 06123 Perugia, Italy;

    CNISM, Unita di Perugia - Dipartimento di Fisica, Via A. Pascoli, 1-06123 Perugia, Italy Centro S3, CNR-Instituto di Nanoscienze, Via Campi 213A, 1-41125 Modern, Italy;

    Department of Electrical and Computer Engineering, National University of Singapore 117576, Singapore;

    Lehrstuhl fuer Physikfunktionaler Schichtsysteme, Physik Department, Technische Universitdt MUnchen, James-Franck-Str. 1, D-85747Garching b. MUnchen, Germany;

    Lehrstuhl fuer Physikfunktionaler Schichtsysteme, Physik Department, Technische Universitdt MUnchen, James-Franck-Str. 1, D-85747Garching b. MUnchen, Germany;

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  • 正文语种 eng
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  • 关键词

    ferromagnetic, antiferromagnetic, and ferrimagnetic resonances; spin-wave resonance; spin waves; fe and its alloys;

    机译:铁磁;反铁磁和亚铁磁谐振;自旋波共振自旋波铁及其合金;

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