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首页> 外文期刊>Radiophysics and quantum electronics >MODELING OF A HIGH-POWER WIDEBAND FREE-ELECTRON MASER AMPLIFIER WITH AN OPERATING FREQUENCY OF 30 GHz TO BE USED IN PARTICLE ACCELERATION EXPERIMENTS
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MODELING OF A HIGH-POWER WIDEBAND FREE-ELECTRON MASER AMPLIFIER WITH AN OPERATING FREQUENCY OF 30 GHz TO BE USED IN PARTICLE ACCELERATION EXPERIMENTS

机译:用于特定加速实验的工作频率为30 GHz的高功率宽带电子自激放大器的建模

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摘要

We study the possibility to develop a high-power free-electron maser amplifier with an operating frequency of 30 GHz to be used in particle acceleration experiments. Various operation regimes are considered, which are capable of ensuring a wide instantaneous amplification band with a high electron efficiency. It is shown that it is possible to achieve a gain ratio of more than 25 dB and an output power of 20 MW in a frequency band with a width of up to 20% of the operating frequency in the so-called dispersion curve contact regime by using a moderately relativistic electron beam formed by the LIU-3000 induction accelerator in an undulator with a regular winding. Application of the profiled undulator allows one to achieve a radiation power of up to 50 MW in a band having a width of more than 50% of the operating frequency in the regime of non-resonant trapping and deceleration of particles.
机译:我们研究了开发工作频率为30 GHz的高功率自由电子maser放大器以用于粒子加速实验的可能性。考虑了各种操作方案,其能够以高电子效率确保宽的瞬时放大带。结果表明,在所谓的色散曲线接触方式下,在带宽高达工作频率的20%的频带中,可以实现大于25 dB的增益比和20 MW的输出功率。在具有规则绕组的波荡器中使用由LIU-3000感应加速器形成的中等相对论电子束。异形波荡器的应用使得在非共振俘获和减速的情况下,在宽度大于工作频率的50%的频带中,可以获得高达50 MW的辐射功率。

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