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Development of an Ultra High Frequency Gyrotron with a Pulsed Magnet

机译:具有脉冲磁铁的超高频陀螺仪的研制

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An ultra-high frequency gyrotron is being developed as a THz radiation source by using a pulsed magnet. We have achieved the highest field intensity of 20.2 T. High frequency operation at the second harmonic will achieve 1.01 THz; the corresponding cavity mode is TE6,11,1. On the other hand, an ultra-high power gyrotron with a pulsed magnet is also being developed as a millimeter to submillimeter wave radiation source. The gyrotron is a large orbit gyrotron (LOG) using an intense relativistic electron beam (IREB). A pulsed power generator "ETIGO-IV" is applied for generation of the IREB. A prototype relativistic LOG was constructed for fundamental operation. The output of the LOG will achieve 144 GHz and 9 MW; the corresponding cavity mode is TE1,4,1. Cavities for 2nd and 4th harmonic operations were designed by numerical simulation for achievement of higher frequency. The progress of development for prototype high frequency gyrotrons with pulsed magnets is presented.
机译:通过使用脉冲磁体开发出超高频陀螺仪作为THZ辐射源。我们已经实现了最高的电场强度为20.2吨。第二次谐波的高频运行将实现1.01至THz;相应的腔模式是TE6,11,1。另一方面,具有脉冲磁体的超高功率陀螺仪也被开发为毫米到亚倍数倍率波辐射源。陀螺仪是一种使用强烈的相对论电子束(IREB)的大轨道陀螺仪(LOG)。脉冲发电机“Etigo-IV”用于产生IREB的产生。用于基本操作的原型相对论日志。日志的输出将实现144 GHz和9兆瓦;相应的腔模式是TE1,4,1。通过数值模拟设计了第二和第4次谐波操作的空腔,以实现更高频率。提出了具有脉冲磁体的原型高频陀螺仪的开发进展。

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