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首页> 外文期刊>Physics of plasmas >Dispersive characteristics and longitudinal resonance properties in a relativistic backward wave oscillator with the coaxial arbitrary-profile slow-wave structure
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Dispersive characteristics and longitudinal resonance properties in a relativistic backward wave oscillator with the coaxial arbitrary-profile slow-wave structure

机译:具有同轴任意剖面慢波结构的相对论后向波振荡器的色散特性和纵向共振特性

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摘要

The method for calculating the dispersion relations of the slow-wave structures (SWSs) with arbitrary geometrical structures is studied in detail by using the Fourier series expansion. In addition, dispersive characteristics and longitudinal resonance properties of the SWSs with the cosinusoidal, trapezoidal, and rectangular corrugations are analyzed by numerical calculation. Based oil the above discussion, a comparison on an L-band coaxial relativistic backward wave oscillator (BWO) and an L-band coaxial BWO with a coaxial extractor is investigated in detail with particle-in-cell KARAT code (V. P Tarakanov. Berkeley Research Associates, Inc., 1992). Furthermore, experiments are carried out at the TORCH-01 accelerator under the low guiding magnetic field. At diode voltage of 647 kV. beam current of 9.3 kA, and guiding magnetic field strength of 0.75 T, the microwave is generated with power of 1.07 GW, mode of TM01, and frequency of 1.61 GHz. That is the first experimental report of the L-band BWO.
机译:通过傅里叶级数展开,详细研究了慢波结构与任意几何结构的色散关系的计算方法。另外,还通过数值计算分析了具有正弦,梯形和矩形波纹的SWS的分散特性和纵向共振特性。基于以上讨论,利用单元格内KARAT码(V.P Tarakanov.L.S。)比较了L波段同轴相对论反向波振荡器(BWO)和带有同轴提取器的L波段同轴BWO的比较。伯克利研究协会有限公司,1992年)。此外,在低引导磁场下在TORCH-01加速器上进行了实验。二极管电压为647 kV时。光束电流为9.3 kA,引导磁场强度为0.75 T,微波产生的功率为1.07 GW,模式为TM01,频率为1.61 GHz。这是L波段BWO的第一个实验报告。

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