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Simulation of deflecting structures for dielectric laser driven accelerators

机译:电介质激光驱动加速器偏转结构的仿真

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摘要

In laser illuminated dielectric accelerators (DLA) high acceleration gradients can be achieved, due to high damage thresholds of the materials at optical frequencies. This is a necessity in developing more compact particle accelerator technologies. The Accelerator on a CHip International Program funded by the Gordon and Betty Moore Foundation is researching such devices. Means to manipulate the beam, i.e. focusing and deflection, are needed for the proper operation of such devices. These means should rely on the same technologies for manufacturing and powering like the accelerating structures. In this study different concepts for dielectric laser driven deflecting structures are investigated via particle-in-cell (PIC) simulations and compared afterwards. The comparison is conducted with respect to the suitability for beam manipulation. Another interesting application will be investigated as a diagnostic device for ultra short electron bunches from conventional accelerators functioning like a radio frequency transverse deflecting cavity (TDS).
机译:在激光照明的介电加速器(DLA)中,由于材料在光频率下的损坏阈值较高,因此可以实现较高的加速度梯度。这是开发更紧凑的粒子加速器技术的必要条件。由Gordon和Betty Moore基金会资助的CHip国际计划加速器正在研究此类设备。为了使这种装置正常工作,需要操纵光束的装置,即聚焦和偏转。这些手段应依靠与加速结构相同的制造和供电技术。在这项研究中,通过单元粒子(PIC)模拟研究了介电激光器驱动的偏转结构的不同概念,然后进行了比较。进行关于光束操纵的适合性的比较。将研究另一个有趣的应用,作为诊断装置,用于诊断来自常规加速器的超短电子束,其功能类似于射频横向偏转腔(TDS)。

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