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Carbon 1s photoelectron spectroscopy of CF_4 and CO: search for chemical effects on the carbon 1s hole-state lifetime

机译:CF_4和CO的碳1s光电子能谱:寻找对碳1s空穴态寿命的化学影响

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Carbon 1s photoelectron spectra for CF_4 and CO have been measured at several photon energies near the carbon 1s threshold. The spectra have been analyzed in terms of the vibrational structure and the natural linewidth. For CO the vibrational structure shows evidence for anharmonicity in both the energy spacing and the intensity. Analysis of the results using an anharmonic model gives an equilibrium bond length for core-ionized CO that is 4.85 pm shorter than that of neutral CO. For CF_4, the vibrational structure is very weak,and the analysis shows that the change in equilibrium CF bond length upon ionization is no more than 0.54 pm. Ab initio theoretical calculations give results in accord with these bond-length changes. The unusually small bond-length contraction in CF_4 can be understood in terms of nonbonded fluorine-fluorine repulsion. The natural linewidth for core-ionized CO, 95+-5 meV, is essentially the same as that of CH_4. This result is in contrast with expectations based on the one-center model of Auger decay and earlier predictions based on semiempirical molecular orbital theory. More recent calculations indicate, however, that three is only a small difference between CO and CH_4, in agreement with the observed result. For CF_4,the natural linewidth is 77+- meV. This value differs from that for CH_4 in the direction expected from the electronegatities of the hydrogen and fluorine, but is greater than the prediction based on semiempirical theory. The natural linewidth for CO with a carbon 1s electron excited to the 2#pi# resonance is 83 meV, which is significantly less than is found for core-ionized CO. Although this difference is supported by theoretical calculations, the direction of the difference is counterintuitive. An overview is presented of the current state of experimental and theoretical knowledge on carbon 1s linewidths.
机译:CF_4和CO的碳1s光电子能谱已经在接近碳1s阈值的几个光子能量下进行了测量。已经根据振动结构和自然线宽分析了光谱。对于一氧化碳,其振动结构在能量间距和强度上均显示出非谐性。使用非谐模型对结果进行分析,得出核心离子化CO的平衡键长比中性CO短4.85 pm。对于CF_4,振动结构非常弱,分析表明平衡CF键的变化电离时的长度不超过0.54 pm。从头开始的理论计算得出的结果与这些键长的变化一致。 CF_4中非常小的键长收缩可以通过非键氟-氟排斥来理解。核心电离的CO的自然线宽为95 + -5 meV,与CH_4的自然线宽基本相同。该结果与基于俄歇衰变的单中心模型的预期以及基于半经验分子轨道理论的早期预测相反。然而,最新的计算表明,CO和CH_4之间的三个仅是很小的差异,与观察到的结果一致。对于CF_4,自然线宽为77 +-meV。该值在氢和氟的电负性预期的方向上与CH_4的值不同,但大于基于半经验理论的预测值。具有被2#pi#共振激发的1s碳电子的CO的自然线宽为83 meV,这比芯离子化的CO的自然线宽小。尽管这种差异得到了理论计算的支持,但差异的方向是违反直觉的。概述了有关碳1s线宽的实验和理论知识的当前状态。

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