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首页> 外文期刊>IEEE Transactions on Magnetics >'Bright' and 'dark' spin wave envelope solitons in magnetic films
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'Bright' and 'dark' spin wave envelope solitons in magnetic films

机译:磁性膜中的“明亮”和“黑暗”自旋波包络孤子

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摘要

The properties of "bright" and "dark" spin wave envelope solitons in dielectric magnetic films are analyzed. It is shown that the nonlinear mechanism responsible for spin wave envelope soliton formation in films is a four-wave interaction between linearly excited spin waves. The coefficients of this interaction are calculated in the case of a tangentially magnetized magnetic film by means of classical Hamiltonian formalism for spin waves. Results of this rigorous calculation are compared with the results of the approximate calculation done by means of the "method of envelopes." Durations of "bright" and "dark" magnetostatic wave envelope solitons are calculated and compared to the results of experiments performed in tangentially magnetized yttrium-iron garnet (YIG) films.
机译:分析了介电磁性膜中“亮”和“暗”自旋波包络孤子的性质。结果表明,导致薄膜中自旋波包络孤子形成的非线性机制是线性激发自旋波之间的四波相互作用。在切向磁化的磁性膜的情况下,通过经典的自旋哈密顿形式来计算这种相互作用的系数。将这种严格计算的结果与通过“信封方法”进行的近似计算的结果进行比较。计算了“亮”和“暗”静磁波包络孤子的持续时间,并将其与在切向磁化的钇铁石榴石(YIG)薄膜中进行的实验结果进行了比较。

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