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首页> 外文期刊>Physical review. B, Condensed Matter And Materals Physics >Spatial evolution of multipeaked microwave magnetic envelope solitons in yttrium iron garnet thin films
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Spatial evolution of multipeaked microwave magnetic envelope solitons in yttrium iron garnet thin films

机译:钇铁石榴石薄膜中多峰微波磁包络孤子的空间演化

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摘要

The spatial evolution of multi-peaked microwave magnetic envelope solitons in a thin yttrium iron garnet (YIG) film has been measured and analyzed. The experiments were done on a long and narrow 5-μm-thick single-crystal YIG film strip. Double-peaked and triple-peaked magnetostatic backward volume wave soliton pulses were excited at a nominal carrier frequency of 7.0 GHz. The measurements utilized a movable inductive magnetodynamic probe detection system. The formation of these multi-peaked soliton (MPS) pulses is a two step process. First, an initial single large amplitude pulse gradually separates into two or more nonsolitonic peaks. After a certain propagation time, these nonsolitonic peaks evolve, in sequence, into solitonic peaks with constant phase (CP) and an overall stair-like profile. Typically, the larger amplitude peaks lead in time and become solitonic first. As the MPS signals propagate and decay, the peaks lose their CP character in reverse sequence. The region of existence for the "fully formed" MPS pulses for which all the individual peaks have CP character is extremely narrow, typically on the order of a few tenths of a millimeter. The velocities of the individual peaks scale linearly with the peak powers. A nonlinear response analysis of the peak velocity based on the method of envelopes gives a reasonable match to the data.
机译:测量并分析了钇铁石榴石(YIG)薄膜中多峰微波电磁包络孤子的空间演化。实验是在一个长且窄的5μm厚的单晶YIG薄膜条上进行的。在7.0 GHz的额定载频上激发了双峰和三峰静磁反向体积波孤子脉冲。测量利用了可移动的感应磁动力探针检测系​​统。这些多峰孤子(MPS)脉冲的形成是一个两步过程。首先,最初的单个大振幅脉冲逐渐分离为两个或多个非孤子峰。在一定的传播时间后,这些非孤子峰依次演化为具有恒定相位(CP)和整体阶梯状轮廓的孤峰。通常,较大的振幅峰值会随时间流逝并首先成为孤子。随着MPS信号的传播和衰减,峰值以相反的顺序失去其CP特性。所有单独的峰值都具有CP特性的“完全形成”的MPS脉冲的存在区域非常狭窄,通常约为十分之几毫米。各个峰值的速度与峰值功率成线性比例。基于包络法的峰值速度的非线性响应分析可以合理地匹配数据。

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