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增强氦纳米液滴中 H_{2}^{+}的强场离解。

Enhancing Strong-Field Dissociation of H_{2}^{+} in Helium Nanodroplets.

机构信息

State Key Laboratory of Precision Spectroscopy, East China Normal University, Shanghai 200241, China.

Key Laboratory of Computational Physics, Institute of Applied Physics and Computational Mathematics, Beijing 100088, China.

出版信息

Phys Rev Lett. 2023 Jan 20;130(3):033201. doi: 10.1103/PhysRevLett.130.033201.

Abstract

We investigate the above-threshold multiphoton ionization of H_{2} embedded in superfluid He nanodroplets driven by ultraviolet femtosecond laser pulses. We find that the surrounding He atoms enhance the dissociation of in-droplet H_{2}^{+} from lower vibrational states as compared to that of isolated gas-phase molecules. As a result, the discrete peaks in the photoelectron energy spectrum correlated with the HHe^{+} from the dissociative in-droplet molecule shift to higher energies. Based on the electron-nuclear correlation, the photoelectrons with higher energies are correlated to the nuclei of the low-vibrationally excited molecular ion as the nuclei share less photon energy. Our time-dependent nuclear wave packet quantum simulation using a simplified He-H_{2}^{+} system confirms the joint contribution of the driving laser field and the neighboring He atoms to the dissociation dynamics of the solute molecular ion. The results strengthen our understanding of the role of the environment on light-induced ultrafast dynamics of molecules.

摘要

我们研究了超流氦纳米液滴中紫外飞秒激光脉冲驱动下的 H_{2}的阈上多光子电离。我们发现,与孤立气相分子相比,周围的 He 原子增强了液滴内 H_{2}^{+}从较低振动态的离解。因此,与解离液滴分子的 HHe^{+}相关联的光电电子能谱中的离散峰移向更高的能量。基于电子-核相关,具有更高能量的光电电子与低振动激发分子离子的核相关联,因为核共享的光子能量较少。我们使用简化的 He-H_{2}^{+}系统的含时核波包量子模拟证实了驱动激光场和相邻 He 原子对溶质分子离子离解动力学的共同贡献。结果增强了我们对环境对分子光诱导超快动力学影响的理解。

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