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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Computation of the S-1 - S-0 Vibronic Absorption Spectrum of Formaldehyde by Variational Gaussian Wavepacket and Semiclassical IVR Methods
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Computation of the S-1 - S-0 Vibronic Absorption Spectrum of Formaldehyde by Variational Gaussian Wavepacket and Semiclassical IVR Methods

机译:变分高斯波袋和半定读IVR方法计算S-1& S-0甲醛的甲醛的振动吸收光谱

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摘要

The vibronic absorption spectrum of the electric dipole forbidden and vibronically allowed S-1((1)A(2)) - S-0((1)A(1)) transition offormaldehyde is calculated by Gaussian wavepacket and semiclassical methods, along with numerically exact reference calculations, using the potential energy surface of Fu, Shepler, and Bowman (J. Am. Chem. Soc. 2011, 133, 7957). Specifically, the variational multiconfigurational Gaussian (vMCG) approach and the Herman-Kluk semiclassical initial value representation (HK-SCIVR) are compared to assess the accuracy and convergence of these methods, benchmarked against numerically exact time dependent wavepacket propagation (TDWP) on the reference potential energy surface. The vMCG calculation is shown to converge quite well with about 100 variationally evolving Gaussian functions and using a local cubic expansion instead of the conventional local harmonic approximation. By contrast, the HK-SCIVR approach with similar to 10(5) trajectories reproduces the vibrationally structured spectral envelope correctly but yields a strongly broadened spectrum. The comparison of the computed absorption spectrum with experiment shows that the relevant vibronic progressions are reasonably reproduced by all computations, but deviations of the order of 10-100 cm(-1) occur, underscoring that both electronic structure calculations and dynamical approaches remain challenging in the calculation of typical small molecule excited-state spectra by trajectory-based methods.
机译:禁止和有型脱震的电偶极子的振动吸收光谱允许的S-1((1)(1)(1)(1)(1)A(1))转变,通过高斯波皮脂和半透明方法来计算,随着数值精确的参考计算,使用FU,SHEPLER和Bowman(J.IM.CHEM。SOC。2011,133,7957)的潜在能量表面。具体地,比较变分型多组件高斯(VMCG)方法和Herman-kluk Semarmassical初始值表示(HK-SCIVR)以评估这些方法的准确性和收敛,以根据参考的数值精确时间相关的WavePacket传播(TDWP)基准测试潜在的能量表面。 VMCG计算被示出与大约100个变异演化的高斯函数并使用本地立方扩展而不是传统的本地谐波近似来收敛。相比之下,具有类似于10(5)个轨迹的HK-SCIVR方法正确地再现振动结构化的光谱包络,但产生强烈扩阔的光谱。计算吸收光谱与实验的比较表明,所有计算都合理地复制了相关的颤音进展,但发生了10-100cm(-1)的偏差,强调电子结构计算和动态方法仍然具有挑战性基于轨迹的方法计算典型小分子激发态光谱。

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