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Nonlinear optical response of noble gases via the metastable electronic state approach

机译:通过亚稳电子态方法对稀有气体的非线性光学响应

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摘要

The goal of this paper is to elucidate the theoretical underpinnings of the metastable electronic state approach (MESA) and demonstrate its utility for the evaluation of the nonlinear optical response of noble-gas atoms with emphasis on the application of the method to the propagation of multicolor optical fields in large-scale, spatially resolved simulations. More specifically, single-active-electron models of various atoms are employed to calculate their nonlinear properties both within the adiabatic approximation, involving a single metastable state and beyond, capturing inertial effects, and wavelength-dependent ionization. Simulations for excitation pulses at different center wavelengths as well as ionization in two-color pulses are presented and compared with numerical solutions of the time-dependent Schrodinger equation. Illustrative examples of the numerical simulation of high-power pulse propagation incorporating MESA data are also presented and showcase the successful application to optical filamentation in the midinfrared region.
机译:本文的目的是阐明亚稳电子态方法(MESA)的理论基础,并展示其在评估稀有气体原子的非线性光学响应中的效用,重点是该方法在多色传播中的应用大规模,空间分辨模拟中的光学场。更具体地,采用各种原子的单活性电子模型来计算它们的绝热近似内的非线性性质,包括单个亚稳态和更高的绝热近似,捕获惯性效应以及与波长有关的电离。给出了在不同中心波长处激发脉冲的仿真以及在两个颜色脉冲中的电离的仿真,并将其与时变薛定inger方程的数值解进行了比较。还介绍了结合MESA数据的高功率脉冲传播的数值模拟示例,并展示了其成功应用于中红外区域的光丝化。

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