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Characterization of High Power Microwave Radiation by an Axially Extracted Vircator

机译:轴向抽提振动器对高功率微波辐射的表征

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Characterization results of high-power microwave radiation, from an axial vircator driven by pulsed electron beam accelerator AMBICA-600 are reported in this paper. We present a study on variation in pulsed microwave power output and dominant frequency by discretely varying anode–cathode (A–C) gap. While keeping the cathode diameter fixed at 40 mm, for the A–C gap distance in the range 5–9 mm, dominant frequencies have been measured to be lying in the range 4.7–9.8 GHz. The trend of a subsequent increase in the dominant frequency at lower A–C gap distances (and vice versa) revealed that center frequency is mainly governed by the longitudinal size of the potential well. The highest microwave power of ${sim}{rm 14}~{rm MW}$ for ${sim}{rm 75}hbox{-}{rm ns}$ pulse duration was obtained at A–C gap of 7 mm having the dominant frequency in C-band at ${sim}{rm 6.9}~{rm GHz}$. The beam-to-microwave power conversion efficiency of ${sim}{1.2%}$ has been demonstrated in our experiments. On the basis of power distribution pattern obtained by the gas breakdown technique, the dominant mode of emission is believed to be transverse magnetic mode. Relative analysis of frequency spectrums obtained for various A–C gap distances evidenced experimental recognition of optimum A–C spacing as a generation of narrowband distinct frequency peak of large magnitude with minimal mode hopping.
机译:本文报道了由脉冲电子束加速器AMBICA-600驱动的轴向振动器产生的高功率微波辐射的表征结果。我们通过离散地改变阳极-阴极(A-C)间隙来研究脉冲微波功率输出和主频的变化。在保持阴极直径固定为40 mm的同时,对于5–9 mm范围内的A–C间隙距离,测得的主频率在4.7–9.8 GHz范围内。在较低的AC间隙距离处,主频率随后增加的趋势(反之亦然)表明中心频率主要由势阱的纵向尺寸决定。在7 mm的A–C间隙中获得了$ {sim} {rm 75} hbox {-} {rm ns} $脉冲持续时间的最高微波功率$ {sim} {rm 14}〜{rm MW} $ C波段的主要频率为$ {sim} {rm 6.9}〜{rm GHz} $。在我们的实验中证明了$ {sim} {1.2%} $的束到微波功率转换效率。基于通过气体击穿技术获得的功率分布模式,主要的发射模式被认为是横向磁模式。对各种AC间隙距离获得的频谱进行的相对分析证明,对最佳AC间隔的实验认识是,产生了最小幅度模式跳跃的大幅度窄带独特频率峰。

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