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Simulating Third-Order Nonlinear Optical Properties Using Damped Cubic Response Theory within Time-Dependent Density Functional Theory

机译:基于时变密度泛函理论的阻尼三次响应理论模拟三阶非线性光学性质

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A general implementation for damped cubic response properties is presented using time-dependent density functional theory (TDDFT) and Slater-type orbital basis sets. To directly calculate two-photon absorption (TPA) cross sections, we also present an implementation of a reduced damped cubic response approach. Validation of the implementations includes a detailed comparison between response theory and the sum-over-states approach for calculating the nonlinear optical properties of LiH, as well as a comparison between the simulated and experimental TPA and third-harmonic generation (THG) spectra for the dimethylamino-nitrostilbene (DANS) molecule. The study of LiH demonstrates the incorrect pole structure obtained in response theory due to the adiabatic approximation typically employed for the exchange-correlation kernel. For DANS, we find reasonable agreement between simulated and experimental TPA and THG spectra. Overall, this work shows that care must be taken when calculating higher-order response functions in the vicinity of one photon poles due to the approximate kernels typically used in the simulations.
机译:利用时变密度泛函理论(TDDFT)和Slater型轨道基组,给出了阻尼立方响应特性的一般实现。为了直接计算两光子吸收(TPA)截面,我们还提出了一种简化的阻尼立方响应方法的实现。实施方案的验证包括响应理论和用于计算LiH非线性光学性质的总和法的详细比较,以及模拟和实验TPA和三次谐波产生(THG)光谱之间的比较。二甲基氨基-硝基苯乙烯(DANS)分子。 LiH的研究表明,由于交换相关核通常采用绝热近似,因此在响应理论中获得的磁极结构不正确。对于DANS,我们在模拟和实验TPA和THG光谱之间找到合理的一致性。总的来说,这项工作表明,由于模拟中通常使用的近似核,因此在计算一个光子极附近的高阶响应函数时必须格外小心。

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