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首页> 外文期刊>Magnetics, IEEE Transactions on >Dissipative Soliton Oscillator With a Nonlinear Spin Wave Transmission Line and a Signal-to-Noise Enhancer in the Feedback Loop
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Dissipative Soliton Oscillator With a Nonlinear Spin Wave Transmission Line and a Signal-to-Noise Enhancer in the Feedback Loop

机译:反馈环路中具有非线性自旋波传输线和信噪比增强器的耗散孤子振荡器

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摘要

This study reports on a dissipative soliton oscillator utilizing two nonlinear magnetostatic spin wave (MSW) devices in a feedback loop. Both nonlinear MSW devices [a spin wave transmission line (TL) and a signal-to-noise enhancer (SNE)] operate in the frequency band where three-wave parametric processes are allowed. Self-generation of a complex-modulated MW signal is caused by nonlinearity of the spin wave TL. The SNE carries out a passive locking of the spin wave self-modulation frequencies and forms the dissipative soliton trains. It is shown, that electronic control of a repetition interval and pulse ratio of dissipative solitons is realized by the change of a klystron beam current.
机译:本研究报告了一种在反馈回路中利用两个非线性静磁自旋波(MSW)器件的耗散孤子振荡器。两种非线性MSW装置[自旋波传输线(TL)和信噪比增强器(SNE)]都在允许三波参数过程的频带中运行。自旋波TL的非线性导致复杂调制的MW信号的自产生。 SNE对自旋波自调制频率进行被动锁定,并形成耗散孤子列。示出了,通过速调管射束电流的改变来实现耗散孤子的重复间隔和脉冲比的电子控制。

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