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首页> 外文期刊>The Journal of Chemical Physics >Multimode quantum dynamics using Gaussian wavepackets: The Gaussian-based multiconfiguration time-dependent Hartree (G-MCTDH) method applied to the absorption spectrum of pyrazine
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Multimode quantum dynamics using Gaussian wavepackets: The Gaussian-based multiconfiguration time-dependent Hartree (G-MCTDH) method applied to the absorption spectrum of pyrazine

机译:使用高斯波包的多模量子动力学:基于高斯的多配置时变哈特里(G-MCTDH)方法应用于吡嗪的吸收光谱

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摘要

The Gaussian-based multiconfiguration time-dependent Hartree (G-MCTDH) method is applied to calculate the S-2(pi pi(*)) absorption spectrum of the pyrazine molecule, whose diffuse structure results from the ultrafast nonadiabatic dynamics at the S-2-S-1 conical intersection. The 24-mode second-order vibronic-coupling model of Raab [J. Chem. Phys. 110, 936 (1999)] is employed, along with 4-mode and 10-mode reduced-dimensional variants of this model. G-MCTDH can be used either as an all-Gaussian approach or else as a hybrid method using a partitioning into primary modes, treated by conventional MCTDH basis functions, and secondary modes described by Gaussian particles. Comparison with standard MCTDH calculations shows that the method converges to the exact result. The variational, nonclassical evolution of the moving Gaussian basis is a key element in obtaining convergence. For high-dimensional systems, convergence is significantly accelerated if the method is employed as a hybrid scheme.
机译:基于高斯的多配置时变哈特里(G-MCTDH)方法用于计算吡嗪分子的S-2(pi pi(*))吸收光谱,其扩散结构是由S-处的超快非绝热动力学导致的2-S-1圆锥形相交。 Raab的24模二阶振动耦合模型[J.化学物理110,936(1999)],以及该模型的4模和10模降维变体。 G-MCTDH既可以用作全高斯方法,也可以用作混合方法,该方法使用划分为通过常规MCTDH基本函数处理的主要模式和由高斯粒子描述的次要模式。与标准MCTDH计算的比较表明,该方法收敛于准确的结果。高斯运动基础的变分,非经典演化是获得收敛的关键因素。对于高维系统,如果将该方法用作混合方案,则收敛会大大加快。

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