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Frequency up-conversion for the reflectionless propagation of a high-power microwave pulse in a self-generated plasma

机译:频率上转换,用于自产生等离子体中大功率微波脉冲的无反射传播

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Abstract: In the study of the propagation of high power microwave pulse, one of the main concerns is how to minimize the energy loss of the pulse before reaching the destination. In the very high power region, one has to prevent the cutoff reflection caused by the excessive ionization in the background air. A frequency auto-conversion process which can lead to reflectionless propagation of powerful EM pulses in self-generated plasmas is studied. The theory shows that under the proper condition the carrier frequency approximately ega of the pulse will indeed shift upward with the growth of plasma frequency approximately ega$-pe$/. Thus, the plasma during breakdown will always remain transparent to the pulse (i.e., approximately ega$GRT approximately ega$-pe$/). A chamber experiment demonstrating the frequency auto-conversion during the pulse propagation through the self-generated plasma is then conducted in a chamber. The detected frequency shift is compared with the theoretical result calculated by using the measured electron density distribution along the propagation path of the pulse. Good agreement between the theory and the experimental results is obtained.!
机译:摘要:在研究大功率微波脉冲的传播过程中,主要关注的问题之一是如何使脉冲在到达目的地之前的能量损失最小。在高功率区域,必须防止由于背景空气中过度电离而引起的截止反射。研究了一种频率自动转换过程,该过程可能导致强电磁脉冲在自生等离子体中无反射传播。该理论表明,在适当的条件下,脉冲的载波频率ega的确会随着等离子体频率egaga-pe $ /的增长而向上移动。因此,在击穿期间的等离子体将始终对脉冲保持透明(即,大约ega $ GRT大约ega $ -pe $ /)。然后在一个腔室内进行一个腔室实验,该实验表明了在通过自生等离子体的脉冲传播过程中的频率自动转换。将检测到的频移与通过使用沿脉冲传播路径测得的电子密度分布计算出的理论结果进行比较。理论与实验结果之间取得了很好的一致性。

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