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Production of Petawatt Laser Pulses by Backward Raman Amplification in Plasma

机译:通过等离子体中的后旋拉曼扩增生产Petawatt激光脉冲

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Backward Raman amplification (BRA) in plasma has been demonstrated an effective way to produce high power laser pulses. However, most experiments of BRA are carried out around the pump wavelength of 800 nm. In recent years, the 1053 nm pump pulse becomes more and more essential as the development of the chirped pulse amplification (CPA) around this wavelength. Here we design an experiment of BRA with a 1053 nm, 20 ps pump pulse and a 1200 nm, 50 fs seed pulse based on the facility of XG Ⅲ. The simulation results obtained by a 1-d particle-in-cell (PIC) code show that the amplified peak seed intensity of ~ 5 × 10~(16) W/cm~2 is obtained, with an energy transfer up to 16.8% . An output pulse of petawatt power is theoretically demonstrated feasible.
机译:等离子体中的落后拉曼扩增(BRA)已经证明了生产高功率激光脉冲的有效方法。然而,胸罩的大多数实验围绕800nm的泵波长进行。近年来,1053nm泵脉冲变得越来越重要,因为围绕该波长的啁啾脉冲放大(CPA)的发展变得越来越重要。在这里,我们根据XGⅢ的设施设计了具有1053nm,20 ps泵脉冲和1200nm,50 fs种子脉冲的胸罩的实验。通过1-D粒子粒细胞(PIC)代码获得的模拟结果表明,获得了〜5×10〜(16)W / cm〜2的放大峰籽强度,能量转移高达16.8% 。理论上展示了PETAWATT功率的输出脉冲。

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