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Design of a wideband, 100 W, 140 GHz gyroklystron amplifier

机译:设计宽带,100 W,140 GHz回旋速调管放大器

摘要

The design study of a 140 GHz, 100 W continuous wave gyroklystron amplifier is presented. The device is intended for use in Dynamic Nuclear Polarization (DNP) enhanced Nuclear Magnetic Resonance (NMR) spectroscopy experiments. The gyroklystron has five cavities and operates in the TE(0,2) mode with a low power electron beam. The design was performed using MAGY, a nonlinear code for modelling gyrotron devices. The design process of the gyroklystron starting from the linear theory to the optimization of the final design in MAGY has been described in detail. Stagger tuning was employed to broadband the device. The design yields 130 W peak power, 36 dB saturated gain, and a -3 dB bandwidth of over 1 GHz (0.75%) with a 15 kV, 150 mA electron beam having a beam pitch factor of 1.5, radius of 0.64 mm and calculated perpendicular momentum spread of 4%. Preliminary designs of the Magnetron Inject Gun (MIG), the input and output couplers, and the mode converter to transform the TE(0,2) operating mode to the HE(1,1) mode for low loss transmission of the output power are also presented. The design meets the specifications for the DNP experiment.
机译:提出了140 GHz,100 W连续波回旋速调管放大器的设计研究。该设备旨在用于动态核极化(DNP)增强核磁共振(NMR)光谱实验。回旋速调管具有五个空腔,并在低功率电子束的TE(0,2)模式下运行。使用MAGY(一种用于对回旋加速器设备进行建模的非线性代码)进行了设计。从线性理论到MAGY中最终设计的优化,陀螺速调管的设计过程已得到详细描述。采用交错调整来使设备宽带化。该设计产生15 kV,150 mA电子束的电子束间距因子为1.5,半径为0.64 mm,并计算出130 W的峰值功率,36 dB的饱和增益和超过1 GHz(0.75%)的-3 dB带宽。垂直动量传播为4%。磁控管注入枪(MIG),输入和输出耦合器以及用于将TE(0,2)工作模式转换为HE(1,1)模式以实现输出功率低损耗传输的模式转换器的初步设计如下:还介绍了。该设计符合DNP实验的规范。

著录项

  • 作者

    Joye Colin D. 1980-;

  • 作者单位
  • 年度 2004
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
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