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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Direct Nonadiabatic Dynamics by Mixed Quantum-Classical Formalism Connected with Ensemble Density Functional Theory Method: Application to trans-Penta-2,4-dieniminium Cation
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Direct Nonadiabatic Dynamics by Mixed Quantum-Classical Formalism Connected with Ensemble Density Functional Theory Method: Application to trans-Penta-2,4-dieniminium Cation

机译:通过混合量子典型形式与集合密度函数理论的混合量子形式的直接非抗动动力学:在Trans-Penta-2,4-二烯鎓阳离子中的应用

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摘要

In this work, a direct mixed quantum-classical dynamics approach is presented, which combines two new computational methodologies. The nuclear dynamics is solved by the decoherence-induced surface hopping based on the exact factorization (DISH-XF) method, which is derived from the exact factorization of the electronic nuclear wave function and correctly describes quantum decoherence phenomena. The state-interaction state-averaged spin-restricted ensemble-referenced Kohn-Sham (SI-SA-REKS, or SSR, for brevity) electronic structure method is based on ensemble density functional theory (eDFT) and provides correct description of real crossings between the ground and excited Born-Oppenheimer electronic states. The new combined approach has been applied to the excited-state nonadiabatic dynamics of the trans-penta-2,4-dieniminium cation (PSB3). The predicted S-1 lifetime of trans-PSB3, tau = 99 +/- 51 fs, and the quantum yield of the cis conformation, phi = 0.63, agree with the results obtained previously in nonadiabatic molecular dynamics simulations performed with a variety of electronic structure methods and dynamics formalisms. Normal-mode analysis of the obtained classical nuclear trajectories suggests that only a few vibrational normal modes contribute to the nuclear wavepacket; where synchronization between several modes plays a dominant role for the outcome of photoisomerization.
机译:在这项工作中,提出了一种直接混合量子 - 经典动力学方法,其结合了两种新的计算方法。通过基于精确分解(Dish-XF)方法的破碎诱导的表面跳跃来解决核动力学,其源自电子核波函数的确切分解,并正确描述了量子脱扑现象。状态相互作用状态平均自旋限制集合参考的Kohn-Sham(Si-SA-REKS或SSR,用于简洁)电子结构方法基于集合密度功能理论(EDFT),并提供正确描述的真实交叉地面和兴奋的出生 - oppenheimer电子国家。新的组合方法已应用于反戊型-2,4-二烯鎓阳离子(PSB3)的兴奋状态非等压动力学。 Trans-PSB3,Tau = 99 +/- 51 fs的预测的S-1寿命,以及顺式构象的量子产率,PHI = 0.63,同意先前在用各种电子进行的非等级分子动力学模拟中获得的结果。结构方法和动力学形式主义。所获得的经典核轨迹的正常模式分析表明,只有几种振动的正常模式有助于核波皮克;在多种模式之间同步的情况下,对光血散结果的结果起主要作用。

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