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Molecular Rydberg states and ionization energy studied by two-photon resonant ionization spectroscopy [Review]

机译:双光子共振电离光谱研究分子里德堡态和电离能[综述]

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In this article, I will review the excited valence/Rydberg states and ionization energies of vinyl chloride, propyne, and allyl radical that we have examined recently in our laboratory by 2+1 resonance enhanced multiphoton ionization (REMPI) spectroscopy. In these studies, we have emphasized spectroscopic investigations from the first excited electronic states to the first ionization energies of the molecules and radicals of interest. In spectroscopic analysis, successful electronic identifications have been facilitated with theoretical (ab initio and density functional) calculations. In particular, we have applied calculated Franck-Condon factors to assist vibrational assignment for experimental vibronic spectra. The spectroscopic studies of these polyatomic excited valence/Rydberg states help us to illuminate the photodissociation pathways and to manifest the complicated chemical-reaction mechanisms due to the multi-dimensionality in polyatomic molecular potential energy surfaces. [References: 111]
机译:在本文中,我将回顾我们最近在实验室中通过2 + 1共振增强多光子电离(REMPI)光谱学检查的氯乙烯,丙炔和烯丙基的激发价/里德堡态和电离能。在这些研究中,我们强调了从第一个激发电子态到感兴趣的分子和自由基的第一个电离能的光谱学研究。在光谱分析中,理论计算(从头算和密度函数)有助于成功的电子识别。特别是,我们已应用计算出的Franck-Condon因子来辅助振动分配,以进行实验性的电子振动谱。这些多原子激发价/里德堡态的光谱研究有助于我们阐明光解离途径,并由于多原子分子势能表面中的多维性而揭示了复杂的化学反应机理。 [参考:111]

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