首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >third-harmonic generation at atmospheric pressure in methane by use of intense femtosecond pulses in the tight-focusing limit
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third-harmonic generation at atmospheric pressure in methane by use of intense femtosecond pulses in the tight-focusing limit

机译:通过在紧聚焦极限内使用强飞秒脉冲在甲烷中于大气压力下产生三次谐波

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摘要

An experimental study of third-harmonic generation in methane with a 100-fs, 820-em, Ti:sapphire laser in a tight focusing geometry is presented. The harmonic intensity and bandwidth were measured in a range of intensities extending from below to far above the first ionization threshold and at pressures as high as 10 atm (1 atm=760 Torr). The harmonic signal follows a power-law dependence on the laser intensity with an exponent of approx 7 and saturates at an intensity I_s approx 4 X 10~(14) W/cm~2. The conversion efficiency was found to increase with the pressure for laser intensities smaller than the saturation intensity I_s and to decrease with the pressure at larger intensities. At laser intensities larger than the saturation intensity a substantial modification in the third-harmonic bandwidth and structure was observed.
机译:提出了使用100fs,820em,Ti:蓝宝石激光器以紧密聚焦的几何形状在甲烷中产生三次谐波的实验研究。在从第一电离阈值的下方延伸到远高于第一电离阈值的强度范围内,并在高达10 atm的压力(1 atm = 760 Torr)下测量谐波强度和带宽。谐波信号遵循幂律对激光强度的依赖性,其指数约为7,并且在强度I_s约为4 X 10〜(14)W / cm〜2时达到饱和。发现转换效率随激光强度小于饱和强度Is的压力而增加,而随激光强度较大的压力而降低。在大于饱和强度的激光强度下,观察到三次谐波带宽和结构发生了实质性变化。

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