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Investigation of bunch repetition rate deviations in FIR FEL driven by a magnetron-based microtron

机译:基于磁控磁控纤维驱动的冷杉率偏差调查

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The stability of the bunch repetition rate in a FIR FEL driven by a 2.8 GHz magnetron-based microtron was investigated using a heterodyne method with a low Q-factor straight-flight measuring cavity. The measuring cavity is located in the straight section of the FIR FEL injection beam line and is excited by the passage of electron bunches. The RF signal from the measuring cavity coupling loop was mixed with a precise heterodyne signal with a frequency difference of several MHz. The beat frequency was analyzed to obtain the temporal distribution of the bunch repetition rate deviation during the macro pulse of the electron beam. The time resolution and the accuracy of measurements are approximately 100 ns and a few kHz, respectively. Based on this data, we could determine the level and shape of the magnetron current and the initial frequency shift between magnetron and accelerating cavity for the FEL operation in the wavelength range 100―300 μm.
机译:使用具有低Q因子直飞测量腔的外差法研究了由2.8GHz磁控管基微量氧化物驱动的FIR FEC中的束重复率的稳定性。测量腔位于灭菌式喷射束线的直线部分中,并且通过电子束的通过激发。来自测量腔耦合环路的RF信号与具有多个MHz的频率差​​的精确的外差信号混合。分析节拍频率以在电子束的宏脉冲期间获得束重复率偏差的时间分布。测量的时间分辨率和准确性分别为约100ns和几kHz。基于该数据,我们可以确定磁控管电流的水平和形状和磁控管之间的初始频率和用于波长范围内的FIR操作的加速腔之间的初始频率偏移。

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