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A slab-symmetric dielectric-loaded structure for high-gradient acceleration at THz

机译:平板对称介质加载结构,可在THz处实现高梯度加速度

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We present a design for a slab-symmetric accelerating structure to be resonantly excited at terahertz frequencies. The device, consisting of a vacuum gap between dielectric-lined walls, combines the advantages of a slab geometry (including strong suppression of transverse beam wakefields and low power density) with the existence of a resonant mode having phase synchronism with relativistic electrons. Accelerating fields of hundreds of MeV/m are predicted when the structure is powered by a high-power FIR radiation source in development at UCLA. Simulation of the structure fields is described and compared with theory, and an experimental program is discussed.
机译:我们提出了一种在太赫兹频率下共振激发的平板对称加速结构的设计。该器件由衬有电介质的壁之间的真空间隙组成,结合了平板几何形状的优势(包括对横束流场的强抑制和低功率密度)以及与相对论电子具有相位同步的共振模式。当该结构由加州大学洛杉矶分校正在开发的高功率FIR辐射源提供动力时,预计会产生数百MeV / m的加速场。描述了结构场的模拟并与理论进行了比较,并讨论了一个实验程序。

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