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Highly-efficient 20 TW Ti:sapphire laser system using optimized diverging beams for laser wakefield acceleration experiments

机译:使用优化的发散光束的高效20 TW Ti:蓝宝石激光系统,用于激光尾场加速实验

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摘要

We developed a highly efficient and compact Ti:sapphire multipass amplifier that uses divergent seed beams to generate 20 TW/40 fs laser pulses with a repetition rate of 10 Hz. The laser system consists of a mode-locked oscillator, a regenerative amplifier, and a multipass power amplifier. The thermal lensing effect is very important in this system, especially in the multipass amplifier, as it limits the conversion efficiency. In order to compensate the thermal lensing effect, we calculated the optimum divergence of the seed beam and used the result for the multipass amplifier, where the thermal focusing is taken into account. In this way, we achieved a very high conversion efficiency of 41%, which is close to the theoretical limit. The laser system was then used with a capillary gas cell to generate stable high-energy electron beams with electron energies of about 150 MeV and a beam divergence of 4 +/- 1 mrad. In this paper, details of the laser system development and experimental results for electron generation are presented. (C) 2015 Elsevier B.V. All rights reserved.
机译:我们开发了一种高效且紧凑的Ti:蓝宝石多通放大器,该放大器使用发散的种子束产生20 TW / 40 fs激光脉冲,重复频率为10 Hz。激光系统由锁模振荡器,再生放大器和多通道功率放大器组成。热透镜效应在该系统中非常重要,尤其是在多通道放大器中,因为它会限制转换效率。为了补偿热透镜效应,我们计算了种子光束的最佳发散度,并将结果用于考虑了热聚焦的多通道放大器。通过这种方式,我们实现了41%的非常高的转换效率,接近理论极限。然后将激光系统与毛细管气室一起使用,以产生稳定的高能​​电子束,电子能量约为150 MeV,电子束发散度为4 +/- 1 mrad。在本文中,将详细介绍激光系统的发展以及电子生成的实验结果。 (C)2015 Elsevier B.V.保留所有权利。

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