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Large-scale correlated study of excited state absorptions in naphthalene and anthracene

机译:萘和蒽中激发态吸收的大规模相关研究

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In this paper, we report theoretical calculations of the photoinduced absorption (PA) spectrum of naphthalene and anthracene, with the aim of understanding those excited states, which are invisible in the linear optical absorption. The excited state absorption spectra are computed from the 1B_(2u)~(+u), and the 1B_(3u)~+ states and a detailed analysis of the many-body character of the states contributing to various peaks in the spectra is presented. The calculations are performed using the Pariser-ParrPople (PPP) Hamiltonian, along with the full configuration interaction technique. The role of Coulomb parameters used in the PPP Hamiltonian is examined by considering standard Ohno parameters, as well as a screened set of parameters. The results of our calculations are extensively compared with the experimental data where available and very good agreement has been obtained. Moreover, our calculations predict the presence of high intensity features which, to the best of our knowledge, have not been explored earlier. We also present concrete predictions on the polarization properties of the PA spectrum, which can be verified in experiments performed on oriented samples.
机译:在本文中,我们报告了萘和蒽的光致吸收(PA)光谱的理论计算,目的是了解那些在线性光学吸收中不可见的激发态。由1B_(2u)〜(+ u)和1B_(3u)〜+态计算出激发态吸收光谱,并详细分析了有助于光谱中各个峰的态的多体特征。计算是使用Pariser-ParrPople(PPP)哈密顿量以及完整配置交互技术执行的。通过考虑标准Ohno参数以及一组经过筛选的参数来检查PPP哈密顿量中使用的库仑参数的作用。我们的计算结果与可获得的实验数据进行了广泛比较,并获得了很好的一致性。此外,我们的计算预测了高强度特征的存在,据我们所知,这些强度特征以前没有被探索过。我们还提出了有关PA光谱偏振特性的具体预测,可以在定向样品上进行的实验中加以验证。

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