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Analysis of THG modes for femtosecond laser pulse

机译:用于飞秒激光脉冲的THG模式分析

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THG is used nowadays in many practical applications such as a substance diagnostics, and biological objects imaging, and etc. With developing of new materials and technology (for example, photonic crystal) an attention to THG process analysis grow. Therefore, THG features understanding are a modern problem. Early we have developed new analytical approach based on using the problem invariant for analytical solution construction of the THG process. It should be stressed that we did not use a basic wave non-depletion approximation. Nevertheless, a long pulse duration approximation and plane wave approximation has applied. The analytical solution demonstrates, in particular, an optical bistability property (and may other regimes of frequency tripling) for the third harmonic generation process. But, obviously, this approach does not reflect an influence of a medium dispersion on the frequency tripling. Therefore, in this paper we analyze THG efficiency of a femtosecond laser pulse taking into account a second order dispersion affect as well as self- and cross-modulation of the interacting waves affect on the frequency conversion process. Analysis is made using a computer simulation on the base of Schrodinger equations describing the process under consideration.
机译:如今在许多实际应用中使用了诸如物质诊断和生物物体成像等的许多实际应用中使用,具有开发新的材料和技术(例如,光子晶体)注意到THG过程分析生长。因此,THG具有理解是一种现代问题。早期我们开发了新的分析方法,基于使用THG过程的分析解决方案建设的问题不变。应该强调我们没有使用基本波非耗尽近似。然而,施加了长脉冲持续时间近似和平面波近似。分析解决方案尤其表现出光学双稳态性质(并且可以用于频率三倍的其他制度),用于三次谐波生成过程。但是,显然,这种方法不会反映媒体分散对频率三倍的影响。因此,在本文中,我们考虑了二阶分散影响的飞秒激光脉冲的效率以及交互波对频率转换过程的自我和交叉调制。使用描述所考虑的过程的Schrodinger方程基部的计算机模拟进行分析。

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