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Investigation of an X-band gigawatt long pulse multi-beam relativistic klystron amplifier

机译:X波段千兆瓦长脉冲多束相对论速调管放大器的研究

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To achieve a gigawatt-level long pulse radiation power in X-band, a multi-beam relativistic klystron amplifier is proposed and studied experimentally. By introducing 18 electron drift tubes and extended interaction cavities, the power capacity of the device is increased. A radiation power of 1.23 GW with efficiency of 41% and amplifier gain of 46 dB is obtained in the particle-in-cell simulation. Under conditions of a 10 Hz repeat frequency and an input RF power of 30 kW, a radiation power of 0.9 GW, frequency of 9.405 GHz, pulse duration of 105 ns, and efficiency of 30% is generated in the experiment, and the amplifier gain is about 45 dB. Both the simulation and the experiment prove that the multi-beam relativistic klystron amplifier can generate a long pulse GW-level radiation power in X-band. (C) 2015 AIP Publishing LLC.
机译:为了在X波段上达到千兆瓦级的长脉冲辐射功率,提出了一种多束相对论速调管放大器,并进行了实验研究。通过引入18个电子漂移管和扩展的相互作用腔,可以增加设备的功率容量。在单元内粒子仿真中获得了1.23 GW的辐射功率,效率为41%,放大器增益为46 dB。在10 Hz重复频率和30 kW输入RF功率的条件下,实验中产生了0.9 GW的辐射功率,9.405 GHz的频率,105 ns的脉冲持续时间和30%的效率,并且放大器增益约为45 dB。仿真和实验均表明,多光束相对论速调管放大器可以在X波段产生长脉冲GW级辐射功率。 (C)2015 AIP Publishing LLC。

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