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Spatio-Temporal Dynamics of Electron Density in Femtosecond Laser Microplasma of Gases

机译:飞秒激光气体等离子体中电子密度的时空动力学

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摘要

The formation and evolution of femtosecond laser plasma produced in microvolumes of gases at different pressures upon their multiply ionization by high intensity pulses of fundamental and second harmonics of a Ti:sapphire laser is studied. The interferometric technique for precise ultrafast optical diagnostics of such plasma was applied. The numerical technique of interferogram processing and reconstruction of instant spatial distribution of refractive index and free electron density in laser-induced plasma applied for this proposes is described. The spatiotemporal distribution of the refractive index and free electron density were studied with a spatial resolution of -1μm and a temporal resolution of -70 fs.
机译:研究了通过Ti:蓝宝石激光器的高次基波和二次谐波的高强度脉冲将不同体积的气体在不同压力下产生的飞秒激光等离子体的形成和演化过程,这些气体在不同压力下会产生多重电离。应用了用于这种等离子体的精确超快速光学诊断的干涉技术。提出了干涉图处理的数值技术,并提出了适用于此的激光诱导等离子体中折射率和自由电子密度的瞬时空间分布重建方法。研究了折射率和自由电子密度的时空分布,其空间分辨率为-1μm,时间分辨率为-70fs。

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