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Linear and nonlinear investigation of a coaxial-waveguide cyclotron autoresonance maser amplifier

机译:同轴波导回旋加速器自谐振微波激射器的线性和非线性研究

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A different concept of gyrodevices in the form of a coaxial-waveguide cyclotron autoresonance maser (CARM) is proposed. Embodying the salient features of large cross-sectional area, low guiding magnetic field, and good mode selectivity as compared to the gyrotron and to the conventional CARM, the proposed device is well suited for operation at both high power and ultrahigh gain in the millimeter wave and far infrared regions. Gyrokinetic analysis and nonlinear simulation are given in detail for a coaxial configuration-with outer and inner radii of 1.83 and 0.50 cm-designed to operate in the TE28,16 mode at 335 GHz, yielding a gain of 64 dB on using a 90 keV and 50 A electron beam confined by a 9.35 T magnetic field. Nonlinear simulation demonstrates the possibility of power enhancement via a tapered magnetic field. The competition of the degenerate mode and the excitation of the absolute instability are discussed. (C) 2004 American Institute of Physics.
机译:提出了以同轴波导回旋加速器自谐振脉动(CARM)形式的陀螺仪设备的不同概念。与回旋加速器和传统的CARM相比,该器件具有显着的特点,即横截面积大,引导磁场低,模式选择性好,因此该器件非常适合在毫米波中以高功率和超高增益工作和远红外区域。详细介绍了同轴配置的运动动力学分析和非线性模拟-外部半径和内部半径分别为1.83和0.50 cm-设计为在335 GHz的TE28,16模式下工作,使用90 keV和90 keV时增益为64 dB。由9.35 T磁场限制的50电子束。非线性仿真证明了通过锥形磁场增强功率的可能性。讨论了简并模的竞争和绝对不稳定性的激发。 (C)2004年美国物理研究所。

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