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首页> 外文期刊>The Journal of Chemical Physics >Fitting coupled potential energy surfaces for large systems: Method and construction of a 3-state representation for phenol photodissociation in the full 33 internal degrees of freedom using multireference configuration interaction determined data
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Fitting coupled potential energy surfaces for large systems: Method and construction of a 3-state representation for phenol photodissociation in the full 33 internal degrees of freedom using multireference configuration interaction determined data

机译:拟合大型系统的耦合势能面:使用多参考构型相互作用确定的数据在全33个内部自由度中苯酚光解离的三态表示方法和结构

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A recently reported algorithm for representing adiabatic states coupled by conical intersections using a quasi-diabatic state Hamiltonian in four and five atom systems is extended to treat nonadiabatic processes in considerably larger molecules. The method treats all internal degrees of freedom and uses electronic structure data from ab initio multireference configuration interaction wave functions with nuclear configuration selection based on quasi-classical surface hopping trajectories. The method is shown here to be able to treat ~30 internal degrees of freedom including dissociative and large amplitude internal motion. Two procedures are introduced which are essential to the algorithm, a null space projector which removes basis functions from the fitting process until they are needed and a partial diagonalization technique which allows for automated, but accurate, treatment of the vicinity of extended seams of conical intersections of two or more states. These procedures are described in detail. The method is illustrated using the photodissociaton of phenol, C_6H_5OH(X~1A′) + hν → C_6H_5OH(?~1A′, B~1A″)→C_6H_5O(X~2B_1, A~2B_2) + H as a test case. Ab initio electronic structure data for the 1,2,31A states of phenol, which are coupled by conical intersections, are obtained from multireference first order configuration interaction wave functions. The design of bases to simultaneously treat large amplitude motion and dissociation is described, as is the ability of the fitting procedure to smooth the irregularities in the electronic energies attributable to the orbital changes that are inherent to nonadiabatic processes.
机译:最近报道了一种在四原子和五原子系统中使用准绝热态哈密顿量来表示由圆锥形相交耦合的绝热态的算法,以处理较大分子中的非绝热过程。该方法处理所有内部自由度,并使用从头到多参考配置相互作用波函数的电子结构数据以及基于准经典表面跳变轨迹的核配置选择。此处显示的方法能够处理约30个内部自由度,包括解离和大幅度内部运动。引入了两个对于算法必不可少的过程:零空间投影仪,它从拟合过程中删除基本功能,直到需要它们为止;以及部分对角化技术,该技术可以自动但精确地处理圆锥形相交的扩展接缝附近。两个或更多状态中的一个。将详细描述这些过程。以苯酚C_6H_5OH(X〜1A')+hν→C_6H_5OH(α〜1A',B〜1A'')→C_6H_5O(X〜2B_1,A〜2B_2)+ H的光解离法为例进行说明。从多参考一阶结构相互作用波函数获得通过锥形相交耦合的苯酚的1,2,31A状态的从头算电子结构数据。描述了同时处理大振幅运动和解离的基极的设计,以及拟合过程使由于非绝热过程所固有的轨道变化而导致的电子能量不规则性平滑的能力。

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