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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Pure even and odd harmonics produced in modeled hydrogen molecular ions in single-color strong laser fields
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Pure even and odd harmonics produced in modeled hydrogen molecular ions in single-color strong laser fields

机译:在单色强激光场中的模拟氢分子离子中产生的纯均匀谐波

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摘要

The even and odd high-order harmonic generation in a modeled hydrogen molecular ion in strong laser fields is studied by numerically simulating the time-dependent Schrodinger equation. By applying a linearly polarized laser pulse whose polarization axis is perpendicular to the molecular axis, the pure odd harmonics polarized along the laser polarization direction are produced. Meanwhile, the pure even harmonics polarized along the molecular axis may be produced simultaneously either by adding an extra weak direct-current electric field along the molecular axis, or by artificially setting asymmetric charges for the two nuclei. The Bohmian trajectories reveal that the pure even harmonics are contributed by the dipole formed by the asymmetric expansion of the ionized wave packet along the molecular axis, instead of the asymmetric Coulomb attraction for the rescattering electron as expected. Moreover, the relationship between the symmetry of molecular orbital and the parity of high-order harmonics is also explored. (C) 2019 Optical Society of America
机译:通过数值模拟时间依赖的Schrodinger方程,研究了强激光场中建模氢分子离子中的偶数和奇数的高阶谐波产生。通过施加线性偏振轴偏振轴垂直于分子轴的激光脉冲,产生沿激光偏振方向偏振的纯奇谐波。同时,通过沿着分子轴添加额外的弱直流电场,或者通过为两个核的人人工设置不对称电荷来同时产生沿分子轴的纯度偶联的均匀谐波。 Bohmian轨迹揭示了纯粹的谐波由沿着分子轴的电离波分组的不对称膨胀形成的偶极子,而不是预期的预期电动电子的不对称库仑吸引力。此外,还探讨了分子轨道的对称性与高阶次次谐波的关系。 (c)2019年光学学会

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