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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Nonmonotonic increase in laser-driven THz emissions through multiple ionization events
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Nonmonotonic increase in laser-driven THz emissions through multiple ionization events

机译:通过多次电离事件,激光驱动的太赫兹辐射非单调增加

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摘要

Highly charged states created through multiple ionization of gases are shown to enhance terahertz (THz) generation by intense, single-or two-color femtosecond laser pulses. A one-dimensional, nonpropagating fluid model reveals the main conversion processes up to 10(17) Wcm(-2) laser intensities, namely, ionization-induced photocurrents and plasma current oscillations. For increasing intensities, we demonstrate a cyclic growth in the THz signal associated with the different binding energies of argon and helium. This behavior is confirmed by direct particle-in-cell and unidirectional pulse propagation simulations. Changes in the forward and backward THz spectra owing to multiple ionization are discussed.
机译:通过气体的多次电离产生的高电荷状态显示出可以通过强烈的单色或双色飞秒激光脉冲增强太赫兹(THz)的产生。一维非传播流体模型揭示了高达10(17)Wcm(-2)激光强度的主要转换过程,即电离引起的光电流和等离子体电流振荡。为了提高强度,我们证明了与氩气和氦气的不同结合能相关的THz信号的周期性增长。通过直接在单元中粒子和单向脉冲传播仿真可以确认此行为。讨论了由于多次电离引起的正向和反向太赫兹光谱的变化。

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