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首页> 外文期刊>Journal of the Korean Physical Society >Numerical Method to Solve a Two-Dimensional Time-Dependent Schrodinger Equation and Its Application to Single Attosecond Pulse Generation with a Polarization-Gated Laser Pulse
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Numerical Method to Solve a Two-Dimensional Time-Dependent Schrodinger Equation and Its Application to Single Attosecond Pulse Generation with a Polarization-Gated Laser Pulse

机译:二维时变Schrodinger方程的数值解法及其在偏振门激光脉冲产生单个阿秒脉冲中的应用

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摘要

We introduce a numerical method to Solve the two-dimensional time-dependent Schrodinger equation of a single-electron atom under an intense laser field. Instead of a two-dimensional spatial grid, a symmetry basis set of the field-free Hamiltonian is used to represent the wavefunction, which may substantially reduce the computing time. Furthermore. the eigenstates of the atom call be labeled by using the quantum number related to the basis set, which may facilitate the analysis involving eigenstates. As all application of the method, single attosecond pulse generation with a polarization-gated laser pulse is investigated.
机译:我们引入了一种数值方法来求解在强激光场下单电子原子的二维时变薛定inger方程。代替二维空间网格,使用无场哈密顿量的对称基础集来表示波函数,这可以大大减少计算时间。此外。通过使用与基集相关的量子数来标记原子调用的本征态,这可能有助于涉及本征态的分析。作为该方法的全部应用,研究了偏振门控激光脉冲产生的单个阿秒脉冲。

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