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AII Optical Control of Beam Dynamics in a DLA

机译:DLA中梁动力学的AII光学控制

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Dielectric laser acceleration draws upon nanofabrication techniques to build photonic structures for high gradient electron acceleration. At the small spatial scales characteristic of these structures conventional accelerator techniques become ineffective at stabilizing the beam dynamics. Instead we propose a scheme to stabilize the motion by directly modulating the drive laser, in analogy to a radio-frequency-quadrupole. Here we present a design for a programmable `lattice' being built at UCLA's Pegasus laboratory. The accelerator accepts an unmodulated 3.5 MeV electron beam and then bunches and accelerates the beam by 1.5 MeV over a distance of 2 cm.
机译:介电激光加速度绘制纳米制备技术,以构建高梯度电子加速度的光子结构。在这些结构的小空间刻度下,这些结构的特性传统的加速器技术在稳定光束动力学时变得无效。相反,我们提出了一种通过直接调制驱动激光器的方案来稳定运动,类似于射频 - 四极杆。在这里,我们为在UCLA的Pegasus实验室建造了一个可编程的“格子”的设计。加速器接受未经调配的3.5 MeV电子束,然后接受束,并在2厘米的距离内将光束加速1.5 mev。

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