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Overview of 'Super-ASHURA' XrF Laser Program

机译:“ Super-ASHURA” XrF激光程序概述

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In the Super-ASHURA KrF Laser at ETL, a main amplifier with full pumping duration (270 ns) and l2 beam lines have been completed. At present, total output energy of 2.7 kJ has been extracted from the main amplifier by double-pass amplified 12 beams (20 ns X 12) with an aperture filling factor of 74/100. Local intrinsic efficiency has reached 10/100. In the Raman amplification which is to be used for high peak power pulse generation, multi-pass forward amplification of nanosecond Stokes pulse showed an energy conversion efficiency of 73/100. Also, a multi-joule short Stokes pulse (150 ps) has been obtained from l2.5 J, and 20 ns pulse by saturated backward amplification of a self generated Stokes pulse. To investigate the effect of irradiation smoothness, the two-dimensional profile of the target rear surface displacement has been measured by using short (< 100 ps) 268 nm probe pulse.
机译:在ETL的Super-ASHURA KrF激光器中,具有完整泵浦持续时间(270 ns)和12光束线的主放大器已经完成。目前,通过孔径为74/100的12束双通放大光束(20 ns X 12)从主放大器中提取了2.7 kJ的总输出能量。本地固有效率已达到10/100。在用于产生高峰值功率脉冲的拉曼放大中,纳秒斯托克斯脉冲的多程正向放大显示出73/100的能量转换效率。此外,通过自产生的Stokes脉冲的饱和反向放大,从l2.5 J和20 ns脉冲中获得了多焦耳的短Stokes脉冲(150 ps)。为了研究辐照平滑度的影响,已通过使用短(<100 ps)268 nm短脉冲探测了目标后表面位移的二维轮廓。

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