首页> 外文会议>Conference on Technologies for Optical Countermeasures;Conference on HighPower Lasers: Technology and Systems, Platforms, Effects >Filaments and post-filaments formation during high-power Ti:Sapphire-laser pulses propagation in air and optical glasses
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Filaments and post-filaments formation during high-power Ti:Sapphire-laser pulses propagation in air and optical glasses

机译:在高功率Ti期间的细丝和后丝后形成:蓝宝石激光脉冲在空气和光学玻璃中的繁殖

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While propagating in air in the filamentation regime a high-power ultrashort laser pulse experiences the self-organizing into spatially localized light channels, which represent parts of laser beam with the highest intensity and have angular divergence reduced in comparison with the beam as a whole. We present the experimental results on the main characteristics of post-filamentation channels formed by the filamentation of Ti:Sapphire-laser pulses (744 nm, 90 fs) in air. We found that these post-filamentation channels are characterized by a number of features, namely, broader spectral composition with pronounced red shift against the initial pulse spectrum, strong nonlinear phase modulation, and reduced pulse duration. We showed that the increase of initial pulse energy from 0.5 to 2 mJ does not affect post-filamentation channel energy (about 0.4 mJ) though leads to significant change in its spectrum. Thereby, relatively high intensity (more than 0.1 TW/cm2), low angular divergence (fractions of mrad) and wide spectral range of post-filamentation channel help to obtain an ultra supercontinual pulse spectrum by means of post-filamentation channel recurrent filamentation in a medium with high optical nonlinearity (e.g., solid dielectric). The obtained results can be useful in solving the practical task of high-intensive post-filamentation light channels application in laser pulse energy long-range delivery.
机译:虽然在成丝政权传播在空气中的高功率超短激光脉冲经历自组织成空间局部化的光信道,其表示具有最高强度的激光束的部分,并有角度发散在与光束作为一个整体相比降低。我们提出通过将Ti的丝状形成形成后丝状形成信道的主要特性的实验结果:蓝宝石激光脉冲(744纳米,90个FS)在空气中。我们发现,这些后成丝通道是由许多功能特征,即,具有显着的红移针对初始脉冲频谱,强非线性相位调制,和降低的脉冲持续时间更宽的光谱组成。我们发现,初始脉冲能量为0.5〜2毫焦耳的增加不会影响虽然引线后成丝的信道能量(约0.4毫焦耳)在其光谱显著变化。由此,相对高强度(大于0.1 TW / cm2)时,低角发散(毫弧度的馏分)和后成丝通道帮助宽的光谱范围内通过在后成丝通道经常成丝的手段获得的超supercontinual脉冲光谱具有高的光学非线性(例如,固体电介质)介质。将所得到的结果可能是在解决高密集后丝状形成光通道的应用程序的实际任务中的激光脉冲能量的远程递送。

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