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首页> 外文期刊>Physical Review. Accelerators and Beams >Design principles for high quality electron beams via colliding pulses in laser plasma accelerators
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Design principles for high quality electron beams via colliding pulses in laser plasma accelerators

机译:激光等离子体加速器中碰撞脉冲产生的高质量电子束的设计原理

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摘要

Laser plasma based accelerators have the potential to reduce dramatically the size and cost of future particle colliders and light sources. Production of high quality beams along with reproducibility, tunability, and efficiency are required for many applications. We present design principles for two-pulse colliding laser pulse injection mechanisms, which can meet these requirements. Simulations are used to determine the best conditions for the production of high quality beams: high charge, low energy spread, and low emittance. Simulations also allow access to the internal dynamics of the interaction, providing insight regarding further improvement of the beam quality. We find that a 20 pC beam can be accelerated to 300 MeV in 4 mm with only a few percent energy spread and transverse normalized emittance close to 1 mm mrad, using a 10 TW laser. We demonstrate that this design scales according to linear theory. Control of the laser pulse mode content and subsequent evolution in the plasma channel are shown to be critical for achieving the highest beam quality.
机译:基于激光等离子体的加速器具有极大地减少未来粒子碰撞器和光源的尺寸和成本的潜力。许多应用都需要生产高质量的光束,以及再现性,可调性和效率。我们提出了可以满足这些要求的两脉冲碰撞激光脉冲注入机制的设计原理。模拟用于确定产生高质量光束的最佳条件:高电荷,低能量散布和低发射率。模拟还允许访问交互的内部动力学,从而提供有关进一步改善光束质量的见解。我们发现,使用10 TW激光,可以在4 mm内将20 pC的光束加速至300 MeV,并且能量扩散很小,横向归一化发射率接近1 mm mrad。我们证明该设计根据线性理论进行缩放。激光脉冲模式含量的控制和随后在等离子通道中的发展对实现最高光束质量至关重要。

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