Frequency Downshift In Rapidly Ionizing Media

S. Kuo, A. Ren
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引用次数: 2

Abstract

Recently, theory, computer simulation and experiment have demonstrated that the frequency of an electromagnetic (EM) wave interacting with a rapidly created plasma is upshifted. The interest in frequency upshifting phenomenon can be attributed to its many potential applications including the enhancement of the frequency tuning capability of existing sources of EM waves and improvement of the performance of high-power radar and direct energy systems by enabling reflectionless propagation of very powerful microwave pulses through the air, etc. Moreover, there are no technical difficulties in producing dense plasma rapidly. It was observed, however, that in some experiments a frequency downshift also exists. Since the created plasma decayed much slower than its growth and since the frequency downshift lines did not appear in the results of computer simulations using a lossless unmagnetized plasma model, the frequency downshift phenomenon has not been discussed. In this work, experimental evidence and theory is presented for the simultaneous creation of a downshifted wave. There is excellent agreement between experimental results and computer simulation based on a simple theory.
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快速电离介质中的频率降频
最近,理论、计算机模拟和实验已经证明,电磁波与快速产生的等离子体相互作用的频率是上移的。对频率上移现象的兴趣可以归因于它的许多潜在应用,包括增强现有电磁波源的频率调谐能力,以及通过使非常强大的微波脉冲在空气中无反射传播来改善高功率雷达和直接能量系统的性能等。此外,快速产生致密等离子体也没有技术上的困难。然而,在一些实验中也观察到频率下移的存在。由于所产生的等离子体衰减速度比其生长速度慢得多,并且由于使用无损非磁化等离子体模型的计算机模拟结果中没有出现频率下移线,因此没有讨论频率下移现象。在这项工作中,实验证据和理论提出了同时创建一个降移波。实验结果与基于简单理论的计算机模拟结果吻合良好。
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