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Self-phase modulation of a ultra-short laser pulse from laser breakdown plasma

机译:激光击穿等离子体超短激光脉冲的自相调制

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The detailed dynamic of an atom in a laser field with strength comparable to the atomic electric field is rich in physics and potential applications. Laser-breakdown plasma-induced spectral shifting in supersonic rare gases jet has been investigated with a sub-picosecond KrF excimer laser focused to peak intensity in the region of 10~(15)W/cm~2. A 1.4mm diameter gas jet target was used in the experiment to minimize the refraction of the laser beam and thus a well-defined focused region was obtained. The typical quasi-periodic spectral shifting structures for helium and argon have been measured at various gas densities. For gas densities below 1 × l0~(20)cm~(-3),both spectral red-shift and blue-shift were observed, indicating the gas is partially ionized, in contrast to the predominantly blue shifted as the gas densities grows high and fully ionized. Compared to the other ultra-short pulse measurement methods, qualitative information about the pulse can be deduced by observing their spectrum after interacting with rare gas.
机译:具有与原子电场相当的强度的激光场中原子的详细动态富含物理和潜在应用。通过聚焦在10〜(15)W / cm〜2的区域中的峰强度的亚皮秒克罗夫准分配激光器研究了超声稀有气体射流中的激光击穿等离子体诱导的光谱转化。在实验中使用1.4mm直径的气体射流靶以最小化激光束的折射,从而获得明确的聚焦区域。在各种气密性上测量了用于氦气和氩气的典型的准周期性光谱换档结构。对于低于1×L0〜(20)cm〜(3)的气体密度,观察到光谱反转和蓝色偏移,表示气体部分是电离的,与大主蓝光相比,随着气体密度的增长并完全电离。与其他超短脉冲测量方法相比,通过在与稀有气体相互作用后观察其光谱,可以推导出关于脉冲的定性信息。

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