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Three-magnon splitting controlled by temperature

机译:三磁子分裂受温度控制

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A nonlinear magnon interaction has been investigated in an yttrium iron garnet/Pt film. In the bilayer film, multiple microwave absorption signals due to the excitation of magnetostatic spin waves, including magnoeto-static surface waves and backward volume magnetostatic spin waves, were observed at room temperature. The microwave absorption spectrum was found to be changed drastically by decreasing temperature. This drastic change in the microwave absorption spectrum is attributed to the appearance of the three-magnon splitting process; the spin-wave dispersion calculated by taking into account the temperature variation of the saturation magnetization indicates that the change in the microwave absorption spectrum appears when the lowest frequency of the spin-wave dispersion becomes lower than a half of the microwave excitation frequency. At this condition, the energy and momentum conservation laws can be fulfilled in the process where a pumped magnon splits into two magnons. These results demonstrate that the nonlinear magnon interaction can be controlled not only by excitation frequency but also by temperature.
机译:在钇铁石榴石/铂薄膜中研究了非线性磁振子相互作用。在双层膜中,在室温下观察到由于静磁自旋波的激发而产生的多个微波吸收信号,包括静磁表面波和后向体积静磁自旋波。发现微波吸收光谱通过降低温度而急剧变化。微波吸收光谱的这种剧烈变化归因于三磁子分裂过程的出现。通过考虑饱和磁化强度的温度变化而计算出的自旋波色散表明,当自旋波色散的最低频率变得低于微波激发频率的一半时,微波吸收谱出现变化。在这种情况下,在将抽运的马农分成两个马农的过程中,可以满足能量和动量守恒定律。这些结果表明非线性磁振子相互作用不仅可以通过激发频率来控制,而且可以通过温度来控制。

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