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Optimization of the dynamic wavefront control of a pulsed kilojouleanosecond-petawatt laser facility

机译:脉冲千焦/纳秒拍瓦激光设备的动态波前控制的优化

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The wavefront aberrations in a large-scale, flash-lamp-pumped, high-energy, high-power glass laser system can degrade considerably the quality of the final focal spot, and limit severely the repetition rate. The various aberrations induced on the Laboratoire pour l'Utilisation des Lasers Intenses (LULI), laser facility (LULI2000) throughout the amplification are identified and analyzed in detail. Based on these analyses, an optimized procedure for dynamic wavefront control is then designed and implemented. The lower-order Zernike aberrations can be effectively reduced by combining an adaptive-optics setup, comprising a bimorph deformable mirror and a four-wave lateral shearing interferometer, with a precise alignment system. This enables the laser chain to produce a reproducible focal spot close to the diffraction limit (Strehl ratio similar to 0.7). This allows also to increase the repetition rate, initially limited by the recovery time of the laser amplifiers, by a factor of 2 (one shot per hour). The proposed procedure provides an attractive alternative for dynamic correction of the wavefront aberrations of a laser facility as complex as the LULI2000. (c) 2008 Optical Society of America.
机译:大规模的闪光灯泵浦,高能量,高功率的玻璃激光系统中的波前像差会大大降低最终焦点的质量,并严重限制重复率。鉴定并详细分析了整个扩增过程中在激光强度实验室应用(LULI),激光设备(LULI2000)上引起的各种像差。基于这些分析,然后设计和实现了动态波前控制的优化程序。通过将包括双压电晶片可变形镜和四波横向剪切干涉仪的自适应光学装置与精确对准系统相结合,可以有效降低低阶Zernike像差。这使激光链能够产生接近衍射极限(Strehl比类似于0.7)的可复制焦点。这也允许将最初受激光放大器恢复时间限制的重复率提高2倍(每小时一发)。所提出的程序为动态校正像LULI2000这样复杂的激光设备的波前像差提供了一种有吸引力的选择。 (c)2008年美国眼镜学会。

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