Center for Quantum Science and Engineering, and Center for Advanced Study in Theoretical Sciences, Department of Physics, National Taiwan University, Taipei 10617, Taiwan.
Department of Chemistry, University of Kansas, Lawrence, Kansas 66045, USA.
Sci Rep. 2016 Nov 24;6:37774. doi: 10.1038/srep37774.
Recently, the study of near- and below- threshold regime harmonics as a potential source of intense coherent vacuum-ultraviolet radiation has received considerable attention. However, the dynamical origin of these lower harmonics, particularly for the molecular systems, is less understood and largely unexplored. Here we perform the first fully ab initio and high precision 3D quantum study of the below- and near-threshold harmonic generation of molecules in an intense 800-nm near-infrared (NIR) laser field. Combining with a synchrosqueezing transform of the quantum time-frequency spectrum and an extended semiclassical analysis, we explore in-depth the roles of various quantum trajectories, including short- and long trajectories, multiphoton trajectories, resonance-enhanced trajectories, and multiple rescattering trajectories of the below- and near- threshold harmonic generation processes. Our results shed new light on the dynamical origin of the below- and near-threshold harmonic generation and various quantum trajectories for diatomic molecules for the first time.
最近,近阈和阈下 regime 谐波作为一种产生强相干真空紫外辐射的潜在源引起了相当大的关注。然而,这些较低谐波的动力学起源,特别是对于分子系统,理解得较少,并且在很大程度上尚未探索。在这里,我们首次对强 800nm 近红外(NIR)激光场中分子的阈下和近阈谐波产生进行了全从头和高精度的 3D 量子研究。通过将量子时频谱的同步挤压变换与扩展的半经典分析相结合,我们深入探讨了各种量子轨迹的作用,包括短和长轨迹、多光子轨迹、共振增强轨迹和多重散射轨迹,这些都对近阈和阈下谐波产生过程有影响。我们的结果首次为二原子分子的近阈和阈下谐波产生及其各种量子轨迹的动力学起源提供了新的认识。