论文标题

基于激光 - 等

Beam dynamics challenges in linear colliders based on laser-plasma accelerators

论文作者

Schroeder, C. B., Benedetti, C., Bulanov, S. S., Terzani, D., Esarey, E., Geddes, C. G. R.

论文摘要

在本文中,我们讨论了与激光驱动的基于等离子体的加速器相关的设计注意事项和光束动态挑战,该挑战应用于多TEV尺度线性界面。等离子体加速器提供超高的梯度和超短束,提供了紧凑的Linacs和功率要求降低的潜力。我们表明,在使用梁成型的激光 - 血浆加速器的非线性气泡状态下,可以保持稳定,有效的加速度,并保存横梁质量。离子运动,自然发生,用于密集的光束(即低升压和高能量)严重湿润横梁不稳定性。考虑到背景离子的库仑散射,这表明血浆中的强烈注意力强烈抑制了散射引起的发射量的生长。血浆中梁的横向运动发出的Betatron辐射发射将导致束功率损失和能量扩散生长;但是,对于低于100 nm的发射率,多型TEV级等离子体Linacs的束功率损失和能量扩散生长将是均等的。

In this paper we discuss design considerations and beam dynamics challenges associated with laser-driven plasma-based accelerators as applied to multi-TeV-scale linear colliders. Plasma accelerators provide ultra-high gradients and ultra-short bunches, offering the potential for compact linacs and reduced power requirements. We show that stable, efficient acceleration with beam quality preservation is possible in the nonlinear bubble regime of laser-plasma accelerators using beam shaping. Ion motion, naturally occuring for dense beams (i.e., low emittance and high energy) severely damps transverse beam instabilities. Coulomb scattering by the background ions is considered and it is shown that the strong focusing in the plasma strongly suppresses scattering-induced emittance growth. Betatron radiation emission from the transverse motion of the beam in the plasma will result in beam power loss and energy spread growth; however for sub-100 nm emittances, the beam power loss and energy spread growth will be sub-percent for multi-TeV-class plasma linacs.

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