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A self-induced white light seeding laser in a femtosecond laser filament

机译:飞秒激光灯丝中的自感应白光播种激光器

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We report on the generation of remote self-seeding laser amplification by using only one 800 nm Ti:sapphire femtosecond laser pulse. The laser pulse (~40 fs) is first used to generate a filament either in pure nitrogen or in ambient air in which population inversion between the B~2 Σ~+_u and X~2 Σ~+_g states of N~+_2 is realized. Self-induced white light inside the filament covering the B~2 Σ~+_u - X~2 Σ~+_g transition is then serving as the seed to be amplified. The self-induced narrow-band laser at 428 nm has a pulse duration of ~2.6 ps with perfect linear polarization properties. This finding opens new possibilities for remote detection in the atmosphere.
机译:我们仅使用一个800 nm Ti:蓝宝石飞秒激光脉冲报告了远程自种激光放大的产生。激光脉冲(〜40 fs)首先用于在纯氮气或环境空气中产生细丝,其中种群反转在N〜+ _2的B〜2Σ〜+ _u和X〜2Σ〜+ _g状态之间被实现。然后,覆盖B〜2Σ〜+ _u-X〜2Σ〜+ _g过渡的灯丝内部的自感应白光用作要放大的种子。 428 nm的自感应窄带激光器的脉冲持续时间约为2.6 ps,具有良好的线性偏振特性。这一发现为在大气中进行远程探测开辟了新的可能性。

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