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首页> 外文期刊>The Journal of Chemical Physics >Electronic excitation and oscillator strength of ethyl iodide by VUV photoabsorption and electron energy loss spectroscopy
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Electronic excitation and oscillator strength of ethyl iodide by VUV photoabsorption and electron energy loss spectroscopy

机译:VUV光吸收和电子能量损失谱分析法测定碘乙烷的电子激发和振荡器强度

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摘要

A high resolution VUV photoabsorption spectrum of ethyl iodide has been recorded between 4 and 10.2 eV (310-120 nm) using synchrotron radiation. The spectrum consists of a broad structureless absorption band centered at 4.78 eV, followed by a region dominated by excitation of Rydberg states. A high resolution photoelectron spectrum (PES) of the lowest energy ionization band has been obtained and provides ionization energies necessary for identification of related Rydberg-excited states. Also, analysis of the vibrational fine structure in the PES has allowed identification of the normal vibrational modes excited and their wave numbers in the ion. These, in turn, have been sued in the assignment of the lowest energy photoabsorption bands arising from electron excitation into the 6s Rydberg orbital. An electron energy loss spectrum has also been recorded from 5.8 to 14.2 eV, under electric-dipole conditions. It confirms the magnitude of the photoabsorption cross section values obtained using the synchrotron radiation and extends the differential and optical oscillator strength values up to 14.2 eV.
机译:使用同步加速器辐射在4至10.2 eV(310-120 nm)之间记录了碘乙烷的高分辨率VUV光吸收光谱。该光谱包括一个以4.78 eV为中心的宽广的无结构吸收带,然后是一个以里德堡态激发为主的区域。已获得最低能量电离带的高分辨率光电子能谱(PES),并提供了识别相关里德堡激发态所需的电离能。同样,对PES中振动精细结构的分析也可以识别出激发的正常振动模式及其在离子中的波数。这些反过来又被归因于电子激发进入6s Rydberg轨道时产生的最低能量光吸收带。在电偶极条件下,电子能量损失谱也记录在5.8eV至14.2eV之间。它确认了使用同步加速器辐射获得的光吸收横截面值的大小,并将微分和光振荡器强度值扩展到了14.2 eV。

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