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Nonlinear scattering of ultrashort laser pulses on two-level system

机译:两级系统上超短激光脉冲的非线性散射

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The presentation is devoted to the theoretical investigation of nonlinear scattering of ultrashort electromagnetic pulses (USP) on two-level quantum system. We consider the scattering of several types of USP, namely, so called corrected Gaussian pulse (CGP) and cosine wavelet pulse. Such pulses have no constant component in their spectrum in contrast with traditional Gaussian pulse. It should be noted that the presence of constant component in the limit of ultrashort pulse durations leads to unphysical results. The main purpose of the present work is the investigation of the change of pulse temporal shape after scattering as a function of initial phase at different distances from the target. Numerical calculations are based on the solution of Bloch equations and expression for scattering field strength via dipole moment of two-level system exposed by the action of incident USP. In our calculation we also account for the influence of refracting index of the air on electric field strength in the pulse after scattering.
机译:该演讲致力于两级量子系统上超短电磁脉冲(USP)非线性散射的理论研究。我们考虑了几种类型的USP的散射,即所谓的校正高斯脉冲(CGP)和余弦小波脉冲。与传统的高斯脉冲相比,此类脉冲在其频谱中没有恒定的分量。应当指出的是,在超短脉冲持续时间的极限内恒定成分的存在会导致非物理结果。本工作的主要目的是研究在散射后脉冲距时间形状的变化,该变化是在距目标不同距离处的初始相位的函数。数值计算基于Bloch方程的解和通过入射USP的作用暴露的两级系统的偶极矩对偶极矩的散射场强的表达式。在我们的计算中,我们还考虑了空气折射率对散射后脉冲中电场强度的影响。

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