Design and experimental testing of W-band planar surface-wave oscillator driven by sheet high-current relativistic electron beam

A. Palitsin, V. Zaslavsky, Yuri V. Rodin, M. Goykhman, A. Gromov, Yury M. Guznov, A. Panin, V. Parshin, A. Malkin, N. Ginzburg
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Abstract

The paper presents the results of theoretical and experimental studies of W-band planar surface-wave oscillator driven by sheet high-current relativistic electron beam with experimentally realized parameters on the basis of the “SINUKI” accelerator (IAP RAS, N. Novgorod, 1 kА / 650 keV / 17 ns). In simulation of the oscillator nonlinear dynamics, we used both advanced quasi-optical approach and direct 3D PIC modeling. In the experiment, the microwave generation with a frequency of about 75 GHz was registered by microwave detector; measured pulse duration was about 4 ns. The output power measured by the calorimetric method was about 25 MW which is in a satisfactory agreement with the theoretical predictions. The important specific of the experimental set-up is the use of highly efficient side wall absorber for the implementation of a single-mode single-frequency generation regime.
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片状大电流相对论电子束驱动w波段平面表面波振荡器的设计与实验测试
本文介绍了在“SINUKI”加速器(IAP RAS, N. Novgorod, 1 kА / 650 keV / 17 ns)的基础上,用实验实现参数的片状大电流相对论电子束驱动w波段平面表面波振荡器的理论和实验研究结果。在振荡器非线性动力学仿真中,我们采用了先进的准光学方法和直接的三维PIC建模。在实验中,微波探测器记录了频率约为75 GHz的微波产生;测量到的脉冲持续时间约为4ns。量热法测得的输出功率约为25 MW,与理论预测结果吻合较好。实验装置的重要特点是使用高效的侧壁吸收器来实现单模单频产生机制。
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