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Stable 0.3-THz Gyrotron Backward-Wave Oscillator With a Tapered Coaxial Interaction Waveguide

机译:带有锥形同轴互作用波导的稳定的0.3THz回旋加速器后向振荡器

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Mode competition is a severe problem in the development of a high-power gyrotron backward-wave oscillator (gyro-BWO) in terahertz (THz) region. To improve the stability of this device, this paper investigates the possibility of using a tapered coaxial waveguide as the interaction structure of a 0.3-THz gyro-BWO. The inner cylinder rarefies the mode density near the operating mode. Moreover, tapering the wall of the outer cylinder suppresses almost all the competing modes and shifts the optimum magnetic tuning range of the operating mode under stable operating conditions. The gyro-BWO is predicted to stably generate a peak power of 17.2 kW with 11.5% efficiency at 0.307 THz, and a continuous tuning bandwidth of 3.4 GHz $({approx}{1.1%})$ for a 30-kV, 5-A electron beam with $alpha=1.0$ and an axial velocity spread of 5%. Compared with the uniform case, the tapered coaxial interaction waveguide enhances both the stability and the frequency tunability of the THz gyro-BWO.
机译:在太赫兹(THz)区域中,大功率回旋后向波振荡器(gyro-BWO)的开发中,模式竞争是一个严重的问题。为了提高该设备的稳定性,本文研究了使用锥形同轴波导作为0.3-THz陀螺-BWO相互作用结构的可能性。内圆柱消除了工作模式附近的模式密度。此外,使外圆柱体的壁逐渐变细可以抑制几乎所有竞争模式,并在稳定的工作条件下改变工作模式的最佳磁调谐范围。陀螺仪BWO预计将在0.307 THz时稳定产生17.2 kW的峰值功率和11.5%的效率,并且对于30 kV,5 kV的连续调谐带宽为3.4 GHz $({约} {1.1%})$电子束$ alpha = 1.0 $,轴向速度扩展为5%。与均匀情况相比,锥形同轴相互作用波导增强了THz陀螺-BWO的稳定性和频率可调性。

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