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Photoionization of clusters in intense few-cycle near infrared femtosecond pulses

机译:强烈的短周期近红外飞秒脉冲中的团簇光电离

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摘要

In this article we present a perspective on the current state of the art in the photoionization of atomic clusters in few-cycle near-infrared laser pulses. Recently, several studies have reported intriguing phenomena associated with the photoionization of clusters by pulses as short as ~10 fs which approach the natural timescates of collective electronic motion in such nanoscale aggregates. In contrast to the dynamics occurring on few- and sub-picosecond timescales where ionic motion sets in and plays a key role marked by resonant plasmon oscillations, the few-cycle limit precludes cluster expansion due to the nuclear motion of ionic constituents. Thus, pulses lasting just a few. optical cycles explore a new "impulsive" regime for the first time in cluster nanoplasmas wherein ions essentially remain "frozen". Along with the perspective on this new regime, we present first measurements of photoelectron distributions and temperatures.
机译:在本文中,我们介绍了在几个周期的近红外激光脉冲中原子团簇的光电离技术的当前现状。最近,一些研究报道了与短至约10 fs的脉冲使簇的光电离有关的有趣现象,这些脉冲接近此类纳米级聚集体中集体电子运动的自然时间类别。与在几皮秒和几皮秒的时间尺度上发生的动力学相反(在几皮秒和几皮秒的时间尺度上,离子运动开始并起着共振等离振子振荡的关键作用),由于离子成分的核运动,少数几个周期的限制阻止了簇的膨胀。因此,脉冲仅持续几个。光学循环首次在簇纳米等离子体中探索了一种新的“脉冲”机制,其中离子基本上保持“冻结”状态。连同对这种新机制的看法,我们介绍了光电子分布和温度的首次测量。

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