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Material selection considerations for coaxial, ferrimagnetic-based nonlinear transmission lines

机译:基于同轴,基于亚铁磁的非线性传输线的材料选择注意事项

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The growing need for solid-state high power microwave sources has renewed interest in nonlinear transmission lines (NLTLs). This article focuses specifically on ferrimagnetic-based NLTLs in a coaxial geometry. Achieved peak powers exceed 30 MW at 30 kV incident voltage with rf power reaching 4.8 MW peak and pulse lengths ranging from 1–5 ns. The presented NLTL operates in S-band with the capability to tune the center frequency of oscillation over the entire 2–4 GHz band and bandwidths of approximately 30%, placing the NLTL into the ultra-wideband–mesoband category of microwave sources. Several nonlinear materials were tested and the relationship between NLTL performance and material parameters is discussed. In particular, the importance of the material's ferromagnetic resonance linewidth and its relationship to microwave generation is highlighted. For a specific nonlinear material, it is shown that an optimum relation between incident pulse magnitude and static bias magnitude exists. By varying the nonlinear material's bias magnetic field, active delay control was demonstrated.
机译:固态高功率微波源的需求不断增长,引起了人们对非线性传输线(NLTL)的新兴趣。本文专门介绍同轴几何中基于铁磁的NLTL。在30 kV的入射电压下,达到的峰值功率超过30 MW,rf功率达到4.8 MW峰值,脉冲长度为1-5 ns。提出的NLTL在S波段工作,能够调谐整个2-4 GHz GHz频带上的振荡中心频率和大约30%的带宽,从而将NLTL置于微波源的超宽带-中频带类别中。测试了几种非线性材料,并讨论了NLTL性能与材料参数之间的关系。特别强调了材料的铁磁共振线宽及其与微波产生的关系的重要性。对于特定的非线性材料,表明入射脉冲幅度和静态偏置幅度之间存在最佳关系。通过改变非线性材料的偏置磁场,证明了主动延迟控制。

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