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Simulation of photoexcitation dynamics in conjugated polymer using Ehrenfest method with configuration interaction singles

机译:使用eHENFEST方法使用eHENFEST方法进行共轭聚合物的光筛分动力学模拟

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Ehrenfest method is commonly used for simulating photoexcitation dynamics in conjugated polymers. However, due to the expensive computational cost, the calculation of electronic excited states for long conjugated polymer chains in Ehrenfest simulations is still at the level of Hartree-Fock approximation. Here, we develop an approach to perform Ehrenfest simulations in terms of configuration interaction singles (CIS) that is beyond the Hartree-Fock approximation. With this approach, we simulate the relaxations of various photoinduced excited states in a single polymer chain. The simulations show that the photoinduced excited states relax to a mixed state very fast, in which the lowest excited state is dominated.In the excited-state relaxation processes, the electron and hole are not separated. We have also studied the exciton dissociation by external electric field, and find that the critical electric field to dissociate the exciton is much lower than that calculated by previous Ehrenfest simulations in terms of low-level excited-state calculations.
机译:Ehrenfest方法通常用于模拟共轭聚合物中的光激发动力学。然而,由于计算成本高昂,Ehrenfest模拟中长共轭聚合物链的电子激发态的计算仍然处于Hartree-Fock近似的水平。在这里,我们开发了一种方法来执行配置交互单体(CI)方面的Ehrenfest模拟,这超出了Hartree-Fock近似。利用这种方法,我们模拟了单个聚合物链中各种光诱导激发态的弛豫。模拟结果表明,光诱导激发态很快松弛到混合态,其中最低激发态占主导地位。在激发态弛豫过程中,电子和空穴不分离。我们还研究了激子在外电场作用下的解离,发现解离激子的临界电场远低于以前Ehrenfest模拟计算的低激发态。

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