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Carrier-wave shape effects in optical filamentation

机译:光学丝中的载波形状效应

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Strong-field ionization in optical filaments created by ultra-short pulses with sub-cycle engineered waveforms is studied theoretically. To elucidate the physics of the recently demonstrated enhanced ionization yield and spatial control of the optical filament core in two color pulses, we employ two types of quantum models integrated into spatially resolved pulse-propagation simulations. We show that the dependence of the ionization on the shape of the excitation carrier is adiabatic in nature, and is driven by local temporal peaks of the electric field. Implications for the modeling of light-matter interactions in multicolor optical fields are also discussed. (C) 2016 Optical Society of America
机译:理论上研究了超短脉冲在亚周期工程波形下产生的灯丝中的强场电离。为了阐明最近证明的在两个颜色脉冲中增强的电离产率和光学灯丝芯的空间控制的物理学原理,我们采用了两种类型的量子模型,这些模型集成在空间分辨的脉冲传播模拟中。我们表明电离对激发载体形状的依赖性本质上是绝热的,并且由电场的局部时间峰值驱动。还讨论了在多色光学场中光-物质相互作用建模的意义。 (C)2016美国眼镜学会

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