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Theoretical study of terahertz generation from atoms and aligned molecules driven by two-color laser fields

机译:由双色激光场驱动的原子和取向分子产生太赫兹的理论研究

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We study the generation of terahertz radiation from atoms and molecules driven by an ultrashort fundamental laser and its second-harmonic field by solving the time-dependent Schr "odinger equation (TDSE). The comparisons between one-, two-, and three-dimensional TDSE numerical simulations show that the initial ionized wave packet and its subsequent acceleration in the laser field and rescattering with long-range Coulomb potential play key roles. We also present the dependence of the optimum phase delay and yield of terahertz radiation on the laser intensity, wavelength, duration, and ratio of two- color laser components. Terahertz wave generation from model hydrogen molecules is further investigated by comparing with high harmonic emission. It is found that the terahertz yield follows the alignment dependence of the ionization rate, while the optimal two- color phase delays vary by a small amount when the alignment angle changes from 0 to 90 degrees, which reflects the alignment dependence of attosecond electron dynamics. Finally, we show that terahertz emission might be used to clarify the origin of interference in high harmonic generation from aligned molecules by coincidentally measuring the alignment-dependent THz yields.
机译:我们通过求解时间相关的Schr“ odinger方程(TDSE),研究了由超短基波激光驱动的原子和分子及其次级谐波场产生太赫兹辐射的过程。一维,二维和三维之间的比较TDSE数值模拟表明,最初的电离波包及其随后在激光场中的加速以及在远距离库仑电势下的散射起着关键作用,我们还提出了最佳相位延迟和太赫兹辐射的产量与激光强度的相关性,波长,持续时间和双色激光成分的比率,通过与高次谐波发射的比较,进一步研究了模型氢分子产生的太赫兹波,发现太赫兹产率遵循电离速率的取向依赖性,而最优的两个-当对准角度从0到90度变化时,颜色相位延迟会有少量变化,这反映了对准的依赖性阿秒电子动力学的影响。最后,我们表明太赫兹发射可用于通过同时测量与取向相关的太赫兹产量来澄清来自对准分子的高次谐波产生中的干扰源。

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