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Stable Charged-Particle Acceleration and Focusing in a Laser Accelerator Using Spatial Harmonics

机译:稳定的带电粒子加速和使用空间谐波的激光加速器聚焦

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摘要

Regarding the laser-driven acceleration of charged particles in photonic systems, a central unmet challenge is the achievement of simultaneous transverse and longitudinal stability at nonultrarelativistic energies. At such energies, Earnshaw's theorem [S. Earnshaw, Trans. Cambridge Philos. Soc. 7, 97 (1842)] indicates that a synchronous accelerating wave gives a defocusing effect. We present a scheme in which particles are accelerated by interaction with a resonant spatial harmonic and are focused by strong ponderomotive interaction with nonresonant spatial harmonics. We show that this scheme exhibits net transverse focusing and longitudinal stability, and we discuss its use in a compact laser accelerator.
机译:关于激光驱动的光子系统中带电粒子的加速,一个主要的未解决挑战是在非超致拉能量下实现同时的横向和纵向稳定性。在这样的能量下,恩肖定理[S.恩肖(Trans)。剑桥Philos。 Soc。 7,97(1842)]表示同步加速波产生散焦效果。我们提出了一种方案,其中粒子通过与共振空间谐波相互作用而加速,并通过与非共振空间谐波的强质动力相互作用而聚焦。我们表明该方案展示了净横向聚焦和纵向稳定性,并讨论了其在紧凑型激光加速器中的使用。

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