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Electronic state spectroscopy of methyl formate probed by high resolution VUV photoabsorption, He(I) photoelectron spectroscopy and ab initio calculations

机译:高分辨率VUV光吸收,He(I)光电子能谱和从头算计算探测的甲酸甲酯的电子态能谱

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摘要

The first ab initio calculations of the vertical excitation energies and oscillator strengths are presented for the neutral electronic transitions of methyl formate, C2H4O2. The highest resolution VUV photoabsorption spectrum of the molecule yet reported is presented over the wavelength range 115 to 310 nm (10.8 to 4.0 eV) revealing several new spectral features. Valence and Rydberg transitions and their associated vibronic series, observed in the photoabsorption spectrum, have been assigned in accordance with new theoretical results. The calculations have been carried out to determine the excitation energies of the lowest energy ionic states of methyl formate and are compared with a newly recorded He(I) photoelectron spectrum (10.4 to 17.0 eV). New vibrational structure is observed in the first photoelectron band. The photoabsorption cross-sections have been used to calculate the photolysis lifetime of methyl formate in the upper stratosphere (20-50 km).
机译:给出了甲酸甲酯C2H4O2的中性电子跃迁的垂直激发能和振荡器强度的从头算。该分子在115至310 nm(10.8至4.0 eV)的波长范围内具有最高分辨率的VUV光吸收光谱,揭示了几个新的光谱特征。根据新的理论结果,分配了在光吸收光谱中观察到的化合价和里德伯格跃迁及其相关的电子序列。已经进行了计算以确定甲酸甲酯的最低能量离子态的激发能,并将其与新记录的He(I)光电子能谱(10.4到17.0 eV)进行了比较。在第一光电子带中观察到新的振动结构。光吸收截面已用于计算高平流层(20-50 km)中甲酸甲酯的光解寿命。

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