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Electric-field control of spin-wave power flow and caustics in thin magnetic films

机译:薄磁膜中旋转波动力流量和苛性耐腐蚀性的电场控制

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An external electric field can modify the strength of the spin-orbit interaction between spins of ions in magnetic crystals. This influence leads to a spin-wave frequency shift that is linear in both the applied electric field and the wave vector of the spin wave. Here we study theoretically the external electric field as a means of control of the spin-wave power flow in thin ferromagnets. The spin-wave group velocity and focusing patterns are obtained from the slowness (isofrequency) curves by evaluating their curvature at each point of the reciprocal space. We show that the combination of the magnetodipole interaction and the electric field can result in nonreciprocal unidirectional caustic beams of dipole-exchange spin waves. We demonstrate that the degree of asymmetry of the spin-wave power flow can be tuned with the external electric field. Our findings open a novel avenue for spin-wave manipulation and development of electrically tunable magnonic devices.
机译:外部电场可以改变磁性晶体中离子旋转之间的旋转轨道相互作用的强度。 这种影响导致旋转波频移,其在施加的电场和旋转波的波向量中是线性的。 在这里,我们研究了外部电场作为控制薄铁圆形旋转波功率的手段。 通过在往复空间的每个点处评估它们的曲率来从衰减(非常谱系)曲线获得旋转波群速度和聚焦图案。 我们表明磁拱域相互作用和电场的组合可以导致偶极交换旋转波的非透镜单向刻录梁。 我们证明可以用外部电场调谐旋转波功率流的不对称程度。 我们的调查结果开辟了一种新颖的旋转波操作和电动调谐磁力装置的开发途径。

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