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Excitation Generation, and Propagation of Soliton-Like Spin-Wave Pulses in Ferromagnetic Films: Numerical Calculation and Experiment

机译:磁薄膜中孤子状自旋波脉冲的激发产生和传播:数值计算和实验

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摘要

The excitation, collision, and detection of soliton-like spin-wave pulses in ferromagnetic films are numerically simulated. The theoretical dependence of the pulse peak power at the output of the delay line on the peak power at the input of the input transducer is constructed for the first time. The experiment is compared with measurements. THe shape of the nonlinear magnetization pulse excited and propagating in the film is the poetically studied as a function of the carrier frequency position relative to the backward volume spin-wave (BVSW) spectrum. The head-on collision of soliton-like BVSW pulses in ferromagnetic films is simulated for the first time.
机译:数值模拟了铁磁膜中类孤子自旋波脉冲的激发,碰撞和检测。首次构建了延迟线输出端的脉冲峰值功率与输入换能器输入端的峰值功率的理论相关性。将实验与测量结果进行比较。对薄膜中激发和传播的非线性磁化脉冲的形状进行了诗意研究,作为相对于后向体积自旋波(BVSW)谱的载频位置的函数。首次模拟了铁磁薄膜中类孤子BVSW脉冲的正面碰撞。

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