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A broadband gyrotron backward-wave oscillator with tapered interaction structure and magnetic field

机译:具有锥形相互作用结构和磁场的宽带回旋后向振荡器

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摘要

The gyro-monotron and gyrotron backward-wave oscillator (gyro-BWO) are the two oscillator versions of gyrotrons. While serving different functions, they are also radically different in the RF field formation mechanisms. The gyro-monotron RF field profile is essentially fixed by the resonant interaction structure, while the gyro-BWO possesses an extra degree of freedom in that the axial RF field profile is self-determined by the beam-wave interaction in a waveguide structure. The present study examines ways to utilize the latter feature for bandwidth broadening with a tapered magnetic field, while also employing a tapered waveguide to enhance the interaction efficiency. We begin with a mode competition analysis, which suggests the theoretical feasibility of broadband frequency tuning in single-mode operation. It is then shown in theory that, by controlling the RF field profile with an up-or down-tapered magnetic field, the gyro-BWO is capable of efficient operation with a much improved tunable bandwidth. (C) 2015 AIP Publishing LLC.
机译:陀螺单向和陀螺回波振荡器(gyro-BWO)是陀螺仪的两个振荡器版本。尽管它们具有不同的功能,但它们在RF场形成机制上也有根本不同。陀螺-单向RF场分布基本上由共振相互作用结构固定,而陀螺-BWO具有额外的自由度,因为轴向RF场分布由波导结构中的束波相互作用自行确定。本研究研究了利用后一种特征通过锥形磁场来加宽带宽的方法,同时还采用了锥形波导来提高相互作用效率。我们从模式竞争分析开始,这表明了单模运行中宽带频率调谐的理论可行性。从理论上可以证明,通过用向上或向下逐渐减小的磁场控制RF场分布,陀螺BWO能够以大大提高的可调带宽有效运行。 (C)2015 AIP Publishing LLC。

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