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Assessing limitations to the two-level approximation in nonlinear optics for organic chromophores by ab initio methods

机译:通过从头算方法评估有机发色团在非线性光学中两级逼近的局限性

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The use of a two-level approximation to simply characterize the nonlinear optical properties of organic materials is well known. Usually only electronic ground states are significantly populated; higher levels are engaged only in the capacity of virtual states, and it is frequently assumed that just one such state dominates in determining the response. Calculating nonlinear optical susceptibilities on this basis, excluding all but the ground and one excited state in a sum-over-states formulation, is a technique widely deployed in the calculation and analysis of nonlinear optical properties. However, the necessity for such an approach is diminishing as, particularly within the last decade, the accuracy of ab initio calculations has reached unprecedented levels. This offers new opportunities for a vigorous test of existing models using real molecular structures. Here we report the results of our recent work on testing the general validity of two-level calculations in nonlinear optics. Firstly, through the extension of approximation to a three-level model we demonstrate that the neglect of additional excited states can lead to substantially erroneous results for the hyperpolarizability elements. Secondly, using high levels of theory and basis set we report the results of ab initio calculations for bom ground and electronically excited states of the optimised structures, for selected merocyanine dyes. The results are used for the calculation of hyperpolarizabilities by a rigorous sum-over-states formulation. A systematic comparison with the two-level approach provides a means for identifying the limits of the model and the criteria for its validity.
机译:使用两级近似来简单地表征有机材料的非线性光学特性是众所周知的。通常,只有电子基态会大量填充。更高级别仅涉及虚拟状态的能力,并且经常假定只有一种这样的状态在确定响应中占主导地位。在此基础上计算非线性光学磁化率(不包括基态和一个激发态),而是在总和状态公式中进行计算,是一种广泛用于非线性光学特性计算和分析的技术。但是,这种方法的必要性正在降低,因为特别是在过去的十年中,从头计算的准确性已达到前所未有的水平。这为使用真实分子结构对现有模型进行严格测试提供了新的机会。在这里,我们报告了我们最近的工作结果,即测试非线性光学中两级计算的一般有效性。首先,通过将近似扩展到三级模型,我们证明了忽略其他激发态会导致超极化性元素的实质上错误的结果。其次,使用高水平的理论和基础集,我们报告了对于选定的部花菁染料,从最优化结构的Bom基和电子激发态开始的计算结果。通过严格的求和状态公式,将结果用于计算超极化率。与两级方法的系统比较为确定模型的局限性和有效性标准提供了一种手段。

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