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首页> 外文期刊>The Journal of Chemical Physics >On the determination of optimized, fully quadratic, coupled state quasidiabatic Hamiltonians for determining bound state vibronic spectra
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On the determination of optimized, fully quadratic, coupled state quasidiabatic Hamiltonians for determining bound state vibronic spectra

机译:确定确定的最佳全二次耦合态拟绝密哈密顿量的方法

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The quasidiabatic, coupled electronic state, fully quadratic Hamiltonian (Hd), suitable for the simulation of spectra exhibiting strong vibronic couplings and constructed using a recently introduced pseudonormal equations approach, is studied. The flexibility inherent in the normal equations approach is shown to provide a robust means for (i) improving the accuracy of Hd, (ii) extending its domain of utility, and (iii) determining the limits of the fully quadratic model. The two lowest electronic states of pyrrolyl which are coupled by conical intersections are used as a test case. The requisite ab initio data are obtained from large multireference configuration interaction expansions comprised of 108.5×10~6 configuration state functions and based on polarized triple zeta quality atomic orbital bases.
机译:研究了拟偶数,耦合电子态,全二次哈密顿量(Hd),它适用于模拟表现出强振动耦合的光谱,并使用最近引入的伪正规方程方法构造。正常方程方法固有的灵活性被证明为(i)提高Hd的准确性,(ii)扩展其效用范围,以及(iii)确定完全二次模型的极限提供了可靠的手段。通过圆锥形交叉点耦合的吡咯基的两个最低电子态用作测试案例。必需的从头算数据是从大型多参考组态相互作用展开式获得的,该展开式扩展由108.5×10〜6个组态状态函数组成,并且基于极化的三泽塔品质原子轨道基础。

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