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首页> 外文期刊>The Journal of Chemical Physics >A full-dimensional multilayer multiconfiguration time-dependent Hartree study on the ultraviolet absorption spectrum of formaldehyde oxide
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A full-dimensional multilayer multiconfiguration time-dependent Hartree study on the ultraviolet absorption spectrum of formaldehyde oxide

机译:多维多层多构型时变Hartree对甲醛氧化物紫外吸收光谱的研究

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摘要

Employing the multilayer multiconfiguration time-dependent Hartree (ML-MCTDH) method in conjunction with the multistate multimode vibronic coupling Hamiltonian (MMVCH) model, we perform a full dimensional (9D) quantum dynamical study on the simplest Criegee intermediate, formaldehyde oxide, in five lower-lying singlet electronic states. The ultraviolet (UV) spectrum is then simulated by a Fourier transform of the auto-correlation function. The MMVCH model is built based on extensive MRCI(8e,8o)/aug-cc-pVTZ calculations. To ensure a fast convergence of the final calculations, a large number of ML-MCTDH test calculations is performed to find an appropriate multilayer separations (ML-trees) of the ML-MCTDH nuclear wave functions, and the dynamical calculations are carefully checked to ensure that the calculations are well converged. To compare the computational efficiency, standard MCTDH simulations using the same Hamiltonian are also performed. A comparison of the MCTDH and ML-MCTDH calculations shows that even for the present not-too-large system (9D here) the ML-MCTDH calculations can save a considerable amount of computational resources while producing identical spectra as the MCTDH calculations. Furthermore, the present theoretical B~1A′ ← X~1A′ UV spectral band and the corresponding experimental measurements [J. M. Beames, F. Liu, L. Lu, and M. I. Lester, J. Am. Chem. Soc. 134, 20045–20048 (2012); L. Sheps, J. Phys. Chem. Lett. 4, 4201–4205 (2013); W.-L. Ting, Y.-H. Chen, W. Chao, M. C. Smith, and J. J.-M. Lin, Phys. Chem. Chem. Phys. 16, 10438–10443 (2014)] are discussed. To the best of our knowledge, this is the first theoretical UV spectrum simulated for this molecule including nuclear motion beyond an adiabatic harmonic approximation.
机译:结合多层多配置时变哈特里(ML-MCTDH)方法和多态多模振子耦合哈密顿量(MMVCH)模型,我们对最简单的Criegee中间体甲醛氧化物进行了全尺寸(9D)量子动力学研究较低的单重态电子状态。然后,通过自相关函数的傅立叶变换来模拟紫外线(UV)光谱。 MMVCH模型是基于广泛的MRCI(8e,8o)/ aug-cc-pVTZ计算建立的。为了确保最终计算的快速收敛,执行了许多ML-MCTDH测试计算,以找到ML-MCTDH核波函数的适当多层间隔(ML树),并仔细检查了动力学计算以确保计算结果很好地收敛了。为了比较计算效率,还执行了使用相同哈密顿量的标准MCTDH仿真。对MCTDH和ML-MCTDH计算的比较表明,即使对于当前不太大的系统(此处为9D),ML-MCTDH计算也可以节省大量计算资源,同时产生与MCTDH计算相同的频谱。此外,目前的理论B〜1A'←X〜1A'紫外光谱带及相应的实验测量结果[J. M. Beames,F.Liu,L.L.Lu和M.I.Lester,J.Am。化学Soc。 134,20045-20048(2012); L.Sheps,J.Phys。化学来吧4,4201–4205(2013); W.-L.丁永辉Chen,W.Chao,M.C.Smith和J.J.-M.林物理化学化学物理16,10438-10443(2014)]中进行了讨论。据我们所知,这是对该分子模拟的第一个理论紫外光谱,包括绝热谐波近似以外的核运动。

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