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Generation of High-Power, Reversed-Cherenkov Wakefield Radiation in a Metamaterial Structure

机译:超材料结构中高功率,反向切伦科夫·韦克菲尔德辐射的产生

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We present the first demonstration of high-power, reversed-Cherenkov wakefield radiation by electron bunches passing through a metamaterial structure. The structure supports a fundamental transverse magnetic mode with a negative group velocity leading to reversed-Cherenkov radiation, which was clearly verified in the experiments. Single 45 nC electron bunches of 65 MeV traversing the structure generated up to 25 MW in 2 ns pulses at 11.4 GHz, in excellent agreement with theory. Two bunches of 85 nC with appropriate temporal spacing generated up to 80 MW by coherent wakefield superposition, the highest rf power that metamaterial structures ever experienced without damage. These results demonstrate the unique features of metamaterial structures that are very attractive for future high-gradient wakefield accelerators, including two-beam and collinear accelerators. Advantages include the high shunt impedance for high-power generation and high-gradient acceleration, the simple and rugged structure, and a large parameter space for optimization.
机译:我们展示了通过超材料结构的电子束产生的高功率,逆切伦科夫逆向场辐射的首次演示。该结构支持具有负群速度的基本横向磁模式,导致反向的切伦科夫辐射,这一点已在实验中得到了验证。穿越结构的单个45 nC电子束65 MeV在11.4 GHz的2 ns脉冲中产生高达25 MW的能量,这与理论非常吻合。通过相干的尾波场叠加,具有适当时间间隔的两束85 nC产生高达80 MW的光,这是超材料结构有史以来所经历的最高RF功率,而没有损坏。这些结果证明了超材料结构的独特特征,这些特征对包括两束和共线加速器在内的未来高梯度尾波加速器非常有吸引力。优势包括用于高功率产生和高梯度加速度的高并联阻抗,简单坚固的结构以及用于优化的大参数空间。

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