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首页> 外文期刊>Canadian Journal of Chemistry >Nonlinear time-dependent density functional theory studies of the ionization of CO2 by ultrashort intense laser pulses
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Nonlinear time-dependent density functional theory studies of the ionization of CO2 by ultrashort intense laser pulses

机译:非线性时变密度泛函理论研究超短强激光脉冲电离二氧化碳

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摘要

Time-dependent density functional theory (TDDFT) studies of the ionization of CO2 by intense laser pulses (3.50 x 10~(14), 1.40 x 10~(15), 2.99 x 10~(15), and 1.25 x 10~(16) W/cm~2) at 800 nm (ω = 0.0584 au) are presented in the nonlinear nonpertubative regime. Special emphasis is placed on elucidating molecular orbital orientation and various peak-intensities effects on the ionization processes. The results reveal that molecular orbital ionizations are strongly sensitive to their symmetry and the laser intensities. Most notably, we found that with a proper choice of the laser intensity (3.5 x 10~(14) W/cm~2), the sensitivity is strong enough such that the nature and symmetry of the highest occupied molecular orbital (HOMO) can be directly probed and visualized from the angular dependence of laser-induced ionization. At higher intensities, ionization is found to occur also from inner orbitals, thus complicating the imaging of simple orbitals. A time-dependent electron-localization function (TDELF) is used to get a visual insight on the time evolution process of the electron density.
机译:时变密度泛函理论(TDDFT)研究强激光脉冲(3.50 x 10〜(14),1.40 x 10〜(15),2.99 x 10〜(15)和1.25 x 10〜( 16)在非线性非高渗态下出现了800 nm(ω= 0.0584 au)时的W / cm〜2)。特别强调阐明分子轨道的取向和各种峰强度对电离过程的影响。结果表明,分子轨道电离对其对称性和激光强度非常敏感。最值得注意的是,我们发现,通过适当选择激光强度(3.5 x 10〜(14)W / cm〜2),灵敏度足够强,可以使最高占据分子轨道(HOMO)的性质和对称性得以实现。可以直接从激光诱导的电离的角度依赖性进行探测和可视化。在较高的强度下,还发现内部轨道也发生电离,因此使简单轨道的成像变得复杂。时间相关的电子定位功能(TDELF)用于对电子密度的时间演化过程进行直观了解。

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