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A walk through the approximations of ab initio multiple spawning

机译:散步到AB Initio多个产卵的近似

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摘要

Full multiple spawning offers an in principle exact framework for excited-state dynamics, where nuclear wave functions in different electronic states are represented by a set of coupled trajectory basis functions that follow classical trajectories. The couplings between trajectory basis functions can be approximated to treat molecular systems, leading to the ab initio multiple spawning method which has been successfully employed to study the photochemistry and photophysics of several molecules. However, a detailed investigation of its approximations and their consequences is currently missing in the literature. In this work, we simulate the explicit photoexcitation and subsequent excited-state dynamics of a simple system, LiH, and we analyze (i) the effect of the ab initio multiple spawning approximations on different observables and (ii) the convergence of the ab initio multiple spawning results towards numerically exact quantum dynamics upon a progressive relaxation of these approximations. We show that, despite the crude character of the approximations underlying ab initio multiple spawning for this low-dimensional system, the qualitative excited-state dynamics is adequately captured, and affordable corrections can further be applied to ameliorate the coupling between trajectory basis functions. Published by AIP Publishing.
机译:完整的多个产卵提供了一个原则上的兴奋状态动态框架,其中不同电子状态的核波函数由一组耦合的轨迹基函数表示,遵循经典轨迹。轨迹基函数之间的联轴器可以近似以治疗分子系统,导致AB Initio多种产卵方法已经成功地用于研究几种分子的光化学和光学药物。然而,目前在文献中缺少对其近似及其后果的详细调查。在这项工作中,我们模拟了简单系统,LIH的显式的相磷和随后的兴奋状态动态,我们分析了(i)AB Initio多个产卵近似值对不同观察到的影响和(ii)AB Initio的收敛性在这些近似的逐渐放松时,多个产卵导致数值精确的量子动态。我们表明,尽管对于该低维系统的AB Initio的近似下面的近似的近似的原始特性,但是充分捕获的定性激发状态动态,并且可以进一步应用经济实惠的校正以改善轨迹基函数之间的耦合。通过AIP发布发布。

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