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A powerful coaxial relativistic backward wave oscillator

机译:强大的同轴相对论后波振荡器

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Conventional coaxial relativistic backward wave oscillator (CRBWO) usually operates at the quasi-TEM mode, whose intense field mainly focuses on the slow wave structures (SWSs) surface. The intense relativistic electron beam (IREB) to stimulate high power microwave (HPM) is needed to pass through the SWSs surface closely so that intense beam-wave interaction can effectively occur. Such a structure greatly limits the power capacity of the device. In the paper, a high power capacity CRBWO is introduced. The proposed CRBWO operates at the coaxial TM01 mode, which is a volumn wave. Thus, interaction between the IREB and the electromagnetic field can be effectively performed in the area far away from the SWSs surface. It is also advantageous to advoid plasma generated by the intense field breakdown and few electrons bormbardment on the SWSs structure surface. Therefore, such a CRBWO probably have a high power capacity. To testify such a viewpoint, a discrete CRBWO operating at X band has been designed in the paper. With a 710 kV, 11 kA electron beam guided by an external magnetic field of ~ 0.8 T, an output power of 2.7GW has been numerically obtained and the device efficiency is close to 35%. As shown in the simulation, the maximum field strength on the SWSs structure surface causing electrons emission and plasma formation is no more than 310 kV/cm, which is greatly lower than 1MV/cm mentioned elsewhere and thus make the intense field breakdown hardly occurs. Such a CRBWO will be further testified experimentally in the future.
机译:常规的同轴相对论后向波振荡器(CRBWO)通常以准TEM模式工作,其强场主要集中在慢波结构(SWSs)表面。需要强烈的相对论电子束(IREB)来激发高功率微波(HPM),使其紧密通过SWS表面,以便可以有效地发生强烈的束波相互作用。这种结构极大地限制了设备的功率容量。本文介绍了一种高功率容量的CRBWO。拟议的CRBWO在同轴TM01模式下运行,该模式为体波。因此,可以在远离SWS表面的区域中有效地执行IREB和电磁场之间的相互作用。避免由强电场击穿和在SWSs结构表面上电子轰击很少而产生的等离子体也是有利的。因此,这种CRBWO可能具有高功率容量。为了证明这种观点,本文设计了在X波段工作的离散CRBWO。在〜0.8 T的外部磁场引导下的710 kV,11 kA电子束中,通过数值方法获得的输出功率为2.7GW,并且器件效率接近35%。如模拟所示,引起电子发射和等离子体形成的SWSs结构表面上的最大场强不超过310kV / cm,这大大低于其他地方提到的1MV / cm,因此几乎不发生强场击穿。这样的CRBWO将在将来通过实验进行进一步验证。

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