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Direct phase and amplitude characterization of femtosecond laser pulses undergoing filamentation in air

机译:飞秒激光脉冲在空气中经历丝化的直接相位和幅度表征

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摘要

Measurement of the temporal (spectral) phase and amplitude of a 50 fs laser pulse approaching and exceeding the critical power for self-focusing (P_(crit)) in air reveals the formation of an isolated 17 fs pulse at 3P_(crit). The dynamics of self-shortening are measured directly in the filament using transient-grating cross-correlation frequency-resolved optical gating with a noble gas serving as the nonlinear medium. Our results support recent filamentary propagation simulations, suggesting that a Kerr-dominated temporal reshaping process toward the end of the filament is largely responsible for the generation of short pulses.
机译:接近并超过空气中自聚焦的临界功率(P_(crit))的50 fs激光脉冲的时间(频谱)相位和幅度的测量揭示了在3P_(crit)处隔离的17 fs脉冲的形成。使用具有稀有气体作为非线性介质的瞬变光栅互相关频率分辨光学门控,可以直接在灯丝中测量自缩短的动力学。我们的结果支持最近的丝状体传播模拟,表明在丝状体末端的克尔主导的时间整形过程在很大程度上负责短脉冲的产生。

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