论文标题

超级Cherenkov-Wakefield辐射作为FEL设施的THZ来源

Superradiant Cherenkov-Wakefield radiation as THz source for FEL facilities

论文作者

Floettmann, Klaus, Lemery, Francois, Dohlus, Martin, Marx, Michaela, Ivanyan, Mikayel, Tsakanov, Vasili

论文摘要

通过与介电层在内部衬里的管道上的电子束将由于与边界的相互作用而在THZ范围内辐射能量。某些频率的共振增强以结构参数为条件,作为管半径和介电层的介电性。在低损耗结构中,窄带辐射是可以通过合适的天线耦合的。对于较高的频率,与电阻外金属层的耦合变得越来越重要。外层的损失禁止在狭窄的条件下达到高频。取而代之的是,可以以仍然有吸引力的功率水平产生短带脉冲。在本文的第一部分中,提出了两层结构阻抗的一般理论,并讨论了与外电阻层的耦合。得出了一组结构参数的辐射能量,功率和脉冲长度的近似关系,并将其与以下一节中的数值结果进行了比较。最后,提出了通过vlasov天线和所达到的光束质量估计辐射偶联的第一个数值结果。

An electron beam passing through a tube which is lined on the inside with a dielectric layer will radiate energy in the THz range due to the interaction with the boundary. The resonant enhancement of certain frequencies is conditioned by structure parameters as tube radius and permittivity of the dielectric layer. In low loss structures narrow-band radiation is generated which can be coupled out by suitable antennas. For higher frequencies the coupling to the resistive outer metal layer becomes increasingly important. The losses in the outer layer prohibit to reach high frequencies with narrow-band conditions. Instead short broad-band pulses can be generated with still attractive power levels. In the first section of the paper a general theory of the impedance of a two-layer structure is presented and the coupling to the outer resistive layer is discussed. Approximate relations for the radiated energy, power and pulse length for a set of structure parameters are derived and compared to numerical results in the following section. Finally first numerical result of the out-coupling of the radiation by means of a Vlasov antenna and estimates of the achieved beam quality are presented.

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