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首页> 外文期刊>IEEE Transactions on Electron Devices >Design of an efficient, low voltage, third harmonic, large-orbit gyrotron amplifier with a vane-resonator output cavity
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Design of an efficient, low voltage, third harmonic, large-orbit gyrotron amplifier with a vane-resonator output cavity

机译:具有叶片谐振器输出腔的高效低电压三次谐波大轨道回旋管放大器的设计

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We present the design of a 100 kW, J-band, third harmonic large-orbit gyrotron amplifier which utilizes the interaction between a 45 kV, 4 A beam and a vane resonator output cavity operating in the "/spl pi/"-mode. An efficiency of 55% is predicted with a large signal gain near 20 dB by a single particle code which takes into account nonideal effects associated with finite beam thickness and finite magnetic field transition widths. High efficiency is achieved by velocity modulation of an axially-streaming annular beam via a short TM/sub 310/ drive cavity. Ballistically created axial bunches are converted into azimuthal bunches when the beam encounters a nonadiabatic, balanced magnetic field reversal at the end of a 30 cm drift region. The design of this tube is presented and its performance is completely characterized before the prospects for the operation of this low voltage configuration at other harmonics are explored.
机译:我们介绍了一个100 kW,J波段,三次谐波大轨道回旋管放大器的设计,该放大器利用45 kV,4 A光束和以“ / spl pi /”模式运行的叶片谐振器输出腔之间的相互作用。单个粒子编码可在接近20 dB的大信号增益下预测55%的效率,该编码考虑了与有限射束厚度和有限磁场转换宽度相关的非理想效应。通过短的TM / sub 310 /驱动腔对轴向流动的环形梁进行速度调制,可以实现高效率。当光束在30 cm漂移区域的末端遇到非绝热,平衡的磁场反转时,弹道产生的轴向束会转换为方位束。在探索这种低电压配置在其他谐波下的运行前景之前,先介绍了该管的设计并充分表征了其性能。

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