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Photon energy dependence of valence band photoemission and resonant photoemission of polystyrene

机译:价带光发射的光子能量依赖性和聚苯乙烯的共振光发射

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摘要

The photon energy dependence of valence band photoemission from polystyrene thin films has been investigated using synchrotron radiation in the range 150-450 eV, covering the carbon K edge. Six valence peaks were found which show an energy dependence that can be qualitatively explained by the relative contributions of 2s and 2p atomic orbitals to the molecular orbital photoemission cross-section. The experimental results are generally in agreement with valence effective Hamiltonian (VEH) calculations in the literature. In the vicinity of the carbon 1s absorption edge, there is a strong enhancement of the valence band emission because of resonant photoemission, reported here in organic polymers for the first time. The relative contribution of spectator and participator decay channels varies among the valence orbitals, in a way that can be associated with the spatial distribution of the benzene-derived molecular orbitals involved in the resonance transition.
机译:聚苯乙烯薄膜的价带光发射的光子能量依赖性已通过使用覆盖碳K边缘的150-450 eV范围内的同步加速器辐射进行了研究。发现了六个价峰,这些价峰显示出能量依赖性,可以通过2s和2p原子轨道对分子轨道光发射截面的相对贡献来定性地解释。实验结果通常与文献中的价有效哈密顿量(VEH)计算相符。在碳1s吸收边缘附近,由于共振光发射,价带发射大大增强,这在有机聚合物中首次报道。旁观者和参与者衰变通道的相对贡献在化合价轨道之间变化,其方式可能与参与共振跃迁的苯衍生的分子轨道的空间分布有关。

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