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Self-action of ultrashort intense laser pulses in dense gases: self-focusing, optical breakdown, supercontinuum generation

机译:超短强激光脉冲在稠密气体中的自作用:自聚焦,光学击穿,超连续谱的产生

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Self-action during the propagation of ultrashort intense laser pulses through dense gases is practically unavoidable and leads to a dramatic change of pulse characteristics such as the beam size and frequency spectrum. The authors report results of experiments on propagation of ultrashort intense laser pulses in high pressure (1-40 atm) gas media. Self-focusing (SF) was observed under various conditions of gas pressure and laser power, accompanied by such phenomena as supercontinuum (SC) generation, conical emission (CE) and optical breakdown (OB). Supercontinuum generation (i.e. a nearly white spectrum generated upon propagation of intense short laser pulses through nonlinear media) has been observed in gases only recently, with appearance a new generation of powerful ultrashort lasers. The authors measured for the first time the spectral evolution of the supercontinuum radiation as a function of incident laser power and gas pressure. The single shot SC spectrum was deeply modulated, with this modulation changing with gas pressure and laser power. Beyond the SC generation threshold the authors also observed an intense conical emission with sharp spectral and spatial maxima.
机译:实际上,在超短强度激光脉冲通过致密气体传播过程中的自作用是不可避免的,并且会导致脉冲特性(例如光束大小和频谱)发生急剧变化。作者报告了在高压(1-40 atm)气体介质中传播超短强度激光脉冲的实验结果。在气压和激光功率的各种条件下观察到自聚焦(SF),并伴有诸如超连续谱(SC)产生,圆锥形发射(CE)和光学击穿(OB)的现象。直到最近才在气体中观察到超连续谱的产生(即在强烈的短激光脉冲通过非线性介质传播时产生的近白色光谱),并出现了新一代强大的超短激光。作者首次测量了超连续谱辐射的光谱演化与入射激光功率和气压的关系。单发SC光谱被深度调制,该调制随气压和激光功率而变化。作者还观察到,超出SC生成阈值的圆锥形发射强度很高,并且光谱和空间最大值均很大。

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