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Theoretical characterization of the lowest-energy absorption band of pyrrole

机译:吡咯最低能量吸收带的理论表征

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The lowest-energy band of the electronic spectrum of pyrrole has been studied with vibrational resolution by using multiconfigurational second-order perturbation theory (CASPT2) and its multistate extension (MS-CASPT2) in conjunction with large atomic natural orbital-type basis sets including Rydberg functions. The obtained results provide a consistent picture of the recorded spectrum in the energy region 5.5-6.5 eV and confirm that the bulk of the intensity of the band arises from a #pi##pi#~* intravalence transition, in contradiction to recent theoretical claims. Computed band origins for the 3s, 3p Rydberg electronic transitions are in agreement with the available experimental data, although new assignments are suggested. As illustrated in the paper, the proper treatment of teh valence-Rydberg mixing is particularly challenging for ab initio methodologies and can be seen as the main source of deviation among the recent theoretical results as regards the position of the low-lying valence excited states of pyrrole.
机译:通过使用多构型二阶微扰理论(CASPT2)及其多态扩展(MS-CASPT2)以及包括Rydberg在内的大原子自然轨道型基集,以振动分辨率研究了吡咯电子光谱的最低能带职能。获得的结果提供了在5.5-6.5 eV的能量区域中记录的光谱的一致图片,并证实了该频带的大部分强度是由#pi ## pi#〜*中间价跃迁引起的,这与最近的理论主张相矛盾。 3s,3p Rydberg电子跃迁的计算谱带起源与可用的实验数据一致,尽管建议进行新的分配。如本文所示,价态-里德堡混合的正确处理对于从头算方法特别具有挑战性,可以看作是最近的理论结果关于低价价激发态位置的主要偏差来源。吡咯。

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