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Amplification of femtosecond pulses at 126 nm in optical-field-induced plasma filamentation in Ar

机译:氩气中的光场诱导等离子体细丝化中飞秒脉冲在126 nm处的放大

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We have observed an optical gain at the wavelength of 126 nm in an Ar excimer (Ar_2*) amplifier by utilizing a femtosecond vacuum ultraviolet (VUV) seed beam tuned at 126 nm. The maximum optical gain value of 1.1 cm~(-1) with a spatial distribution in the optical-field-induced ionization (OFI) Ar plasma was observed. The plasma diagnosis revealed that the plasma contraction near the plasma amplifier axis together with the plasma expansion was a key issue to observe such a high optical gain value inside the Ar plasma filament. The center axis of the contracted plasma amplifier showed the high electron density more than 10~(18) cm~(-3) even after 100 ns from the plasma production of Ar at 1 MPa. Our OFI plasma/excimer kinetics code reproduced the temporal progress of the optical gain distribution as well as the maximum gain value.
机译:我们已经通过利用在126 nm处调谐的飞秒真空紫外(VUV)种子束在Ar准分子(Ar_2 *)放大器中观察到了在126 nm波长处的光学增益。观察到最大光增益值为1.1 cm〜(-1),在光场诱导电离(OFI)Ar等离子体中具有空间分布。等离子体诊断表明,等离子体放大器轴附近的等离子体收缩以及等离子体膨胀是观察Ar等离子体灯丝内部如此高的光学增益值的关键问题。收缩等离子体放大器的中心轴即使在1 MPa的Ar等离子体产生100 ns后仍显示超过10〜(18)cm〜(-3)的高电子密度。我们的OFI等离子体/受激准分子动力学代码再现了光学增益分布的时间变化以及最大增益值。

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