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Successful Suppression of Pulse Shortening in an $X$ -Band Overmoded Relativistic Backward-Wave Oscillator With Pure $mathrm{TM}_{01}$ Mode Output

机译:成功地抑制 $ X $ -带纯正 $ mathrm {TM} _ {01} $ 模式输出

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摘要

Long-pulse operation of relativistic backward-wave oscillators (RBWOs) is seriously handicapped by pulse-shortening phenomenon. Explosive emission plasma formed on the surface of slow-wave structures (SWSs) due to RF breakdown is considered to be the predominant cause of pulse shortening in RBWOs. Utilizing overmoded SWSs with large diameter is effective for decreasing the field strength on the surface of SWSs and the possibility of RF breakdown. However, multiple modes may be output simultaneously in overmoded RBWOs. In this paper, both the power capacity and output mode purity of an -band overmoded RBWO are substantially improved through optimizing the profile of the SWSs and geometric parameters of the whole electrodynamic structures. As a result, we successfully suppress pulse shortening and achieve pure mode output simultaneously. The first ever reported experimental result is that the pure mode is radiated with a power of 2 GW, a pulse duration of 116 ns, a power efficiency of 28%, and a repetition rate of 30 Hz.
机译:相对论反向波振荡器(RBWO)的长脉冲操作受到脉冲缩短现象的严重阻碍。由于RF击穿而在慢波结构(SWSs)表面形成的爆炸发射等离子体被认为是RBWO中脉冲缩短的主要原因。利用大直径的过调制的SWS可以有效降低SWS表面的场强和RF击穿的可能性。但是,在过调制的RBWO中可能同时输出多种模式。在本文中,通过优化SWS的轮廓和整个电动结构的几何参数,可以显着提高带过调制的RBWO的功率容量和输出模式纯度。结果,我们成功地抑制了脉冲缩短,并同时实现了纯模式输出。有史以来第一个报道的实验结果是,纯模式以2 GW的功率,116 ns的脉冲持续时间,28%的功率效率和30 Hz的重复频率辐射。

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