Li Peng-Cheng, Liu He-Chuan, Jooya Hossein Z, Belmiro Chu Chon-Teng, Chu Shih-I
Opt Express. 2021 Mar 1;29(5):7134-7144. doi: 10.1364/OE.418402.
We present an ab initio study of the quantum dynamics of high-order harmonic generation (HHG) near the cutoff in intense laser fields. To uncover the subtle dynamical origin of the HHG near the cutoff, we extend the Bohmian mechanics (BM) approach for the treatment of attosecond electronic dynamics of H and Ar atoms in strong laser fields. The time-dependent Schrödinger equation and the self-interaction-free time-dependent density functional theory are numerically solved accurately and efficiently by means of the time-dependent generalized pseudospectral method for nonuniform spatial discretization of the Hamiltonian. We find that the most devoting trajectories calculated by the BM to the plateau harmonics are shorter traveling trajectories, but the contributions of the short trajectories near the cutoff are suppressed in HHG. As a result, the yields of those harmonics in the region near the cutoff are relatively weak. However, for the last few harmonics just above the cutoff, the HHG intensity becomes a little higher. This is because the HHG just above the cutoff arises from those electrons ionized near the peak of the laser pulse, where the ionization rate is the highest. In addition, the longer Bohmian trajectories return to the core with lower energies, these trajectories contribute to the below-threshold harmonics. Our results provide a deeper understanding of the generation of supercontinuum harmonic spectra and attosecond pulses via near cutoff HHG.
我们对强激光场中截止频率附近的高次谐波产生(HHG)的量子动力学进行了从头算研究。为了揭示截止频率附近HHG的微妙动力学起源,我们扩展了玻姆力学(BM)方法,用于处理强激光场中H和Ar原子的阿秒电子动力学。通过对哈密顿量进行非均匀空间离散化的含时广义伪谱方法,精确有效地数值求解了含时薛定谔方程和无自相互作用含时密度泛函理论。我们发现,BM计算得出的对平台谐波贡献最大的轨迹是较短的传播轨迹,但截止频率附近短轨迹在HHG中的贡献受到抑制。因此,截止频率附近区域中那些谐波的产率相对较弱。然而,对于截止频率之上的最后几个谐波,HHG强度会略高一些。这是因为截止频率之上的HHG来自于激光脉冲峰值附近电离的那些电子,那里的电离率最高。此外,较长的玻姆轨迹以较低能量返回核心,这些轨迹对阈下谐波有贡献。我们的结果为通过近截止频率HHG产生超连续谐波光谱和阿秒脉冲提供了更深入的理解。