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首页> 外文期刊>The Journal of Chemical Physics >Quantum dynamics on a three-sheeted six-dimensional ab initio potential-energy surface of the phosphine cation: Simulation of the photoelectron spectrum and the ultrafast radiationless decay dynamics
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Quantum dynamics on a three-sheeted six-dimensional ab initio potential-energy surface of the phosphine cation: Simulation of the photoelectron spectrum and the ultrafast radiationless decay dynamics

机译:三层六维膦阳离子从头算势能表面上的量子动力学:光电子光谱和超快无辐射衰变动力学的模拟

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A diabatic three-sheeted six-dimensional potential-energy surface has been constructed for the ground state and the lowest excited state of the PH3+ cation. Coupling terms of Jahn-Teller and pseudo-Jahn-Teller origin up to eighth order had to be included to describe the pronounced an-harmonicity of the surface due to multiple conical intersections. The parameters of the diabatic Hamiltonian have been optimized by fitting the eigenvalues of the potential-energy matrix to ab initio data calculated at the CASSCF/MRCI level employing the correlation-consistent triple-zeta basis. The theoretical photoelectron spectrum of phosphine and the non-adiabatic nuclear dynamics of the phosphine cation have been computed by propagating nuclear wave packets with the multiconfiguration time-dependent Hartree method. The theoretical photoelectron bands obtained by Fourier transformation of the autocorrelation function agree well with the experimental results. It is shown that the ultrafast non-radiative decay dynamics of the first excited state of PH3+ is dominated by the exceptionally strong Jahn-Teller coupling of the asymmetric bending vibrational mode together with a hyperline of conical intersections with the electronic ground state induced by the umbrella mode. Time-dependent population probabilities have been computed for the three adiabatic electronic states. The non-adiabatic Jahn-Teller dynamics within the excited state takes place within approximate to 5 fs. Almost 80% of the excited-state population decay to the ground state within about 10 fs. The wave packets become highly complex and delocalized after 20 fs and no further significant transfer of electronic population seems to occur up to 100 fs propagation time. (C) 2015 AIP Publishing LLC.
机译:已为PH3 +阳离子的基态和最低激发态构建了非绝热的三层六维势能表面。包括八阶的Jahn-Teller和伪Jahn-Teller的耦合项必须被描述,以描述由于多个圆锥形相交而引起的表面明显的非谐性。通过将势能矩阵的特征值拟合到在CASSCF / MRCI级别使用相关一致的三重基础计算的从头算数据,可以优化非绝热哈密顿量的参数。通过使用与时间相关的多构型Hartree方法传播核波包,计算了膦的理论光电子能谱和膦阳离子的非绝热核动力学。通过自相关函数的傅里叶变换获得的理论光电子带与实验结果吻合良好。结果表明,PH3 +的第一激发态的超快非辐射衰变动力学主要由非对称弯曲振动模态的超强Jahn-Teller耦合以及伞形感应的电子基态与圆锥形交叉点的超线所控制。模式。已计算出三种绝热电子状态随时间变化的总体概率。激发态内的非绝热Jahn-Teller动力学发生在大约5 fs内。在大约10 fs内,几乎80%的激发态种群会衰减到基态。在20 fs之后,波包变得高度复杂且离域,并且在传播时间达到100 fs时似乎没有发生进一步的电子迁移。 (C)2015 AIP Publishing LLC。

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