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Coherent Cherenkov-Cyclotron Radiation Excited by an Electron Beam in a Metamaterial Waveguide

机译:超材料波导中电子束激发的相干Cherenkov-回旋加速器辐射

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摘要

An electron beam passing through a metamaterial structure is predicted to generate reversed Cherenkov radiation, an unusual and potentially very useful property. We present an experimental test of this phenomenon using an intense electron beam passing through a metamaterial loaded waveguide. Power levels of up to 5 MW are observed in backward wave modes at a frequency of 2.40 GHz using a one microsecond pulsed electron beam of 490 keV, 84 A in a 400 G magnetic field. Contrary to expectations, the output power is not generated in the Cherenkov mode. Instead, the presence of the magnetic field, which is required to transport the electron beam, induces a Cherenkov-cyclotron (or anomalous Doppler) instability at a frequency equal to the Cherenkov frequency minus the cyclotron frequency. Nonlinear simulations indicate that the Cherenkov-cyclotron mode should dominate over the Cherenkov instability at a lower magnetic field where the highest output power is obtained.
机译:预计通过超材料结构的电子束会产生反向的Cherenkov辐射,这是一种不寻常且可能非常有用的特性。我们使用强电子束穿过超材料加载的波导,对该现象进行了实验测试。在400G磁场中,使用490keV,84A的1微秒脉冲电子束,在2.40 GHz频率的反向波模式下观察到的功率水平高达5MW。与预期相反,在Cherenkov模式下没有产生输出功率。相反,传输电子束所需的磁场的存在会引起Cherenkov回旋加速器(或异常多普勒)的不稳定性,其频率等于Cherenkov频率减去回旋加速器频率。非线性模拟表明,在获得最高输出功率的较低磁场下,切伦科夫回旋模式应优于切伦科夫不稳定性。

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