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首页> 外文期刊>The Journal of Chemical Physics >Ab initio ground and excited state potential energy surfaces for NO-Kr complex and dynamics of Kr solids with NO impurity
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Ab initio ground and excited state potential energy surfaces for NO-Kr complex and dynamics of Kr solids with NO impurity

机译:NO-Kr配合物的从头算基态和激发态势能面以及带有NO杂质的Kr固体的动力学

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The intermolecular potentials for the NO(X 2II)-Kr and NO(A 2SIGMA+)-Kr systems have been calculated using highly accurate ab initio calculations.The spin-restricted coupled cluster method for the ground 1 2A'state[NO(X 2II)-Kr]and the multireference singles and doubles configuration interaction method for the excited 2 2A'state[NO(A 2SIGMA+)-Kr],respectively,were used.The potential energy surfaces(PESs)show two linear wells arid one that is almost in the perpendicular position.An analytical representation of the PESs has been constructed for the triatomic systems and used to carry out molecular dynamics(MD)simulations of the NO-doped krypton matrix response after excitation of NO.MD results are shown comparatively for three sets of potentials:(1)anisotropic ab initio potentials[NO molecule direction fixed during the dynamics and considered as a point(its center of mass)],(2)isotropic ab initio potentials(isotropic part in a Legendre polynomial expansion of the PESs),and(3)fitted Kr-NO potentials to the spectroscopic data.An important finding of this work is that the anisotropic and isotropic ab initio potentials calculated for the Kr-NO triatomic system are not suitable for describing the dynamics of structural relaxation upon Rydberg excitation of a NO impurity in the crystal.However,the isotropic ab initio potential in the ground state almost overlaps the published experimental potential,being almost independent of the angle asymmetry.This fact is also manifested in the radial distribution function around NO.However,in the case of the excited state the isotropic ab initio potential differs from the fitted potentials,which indicates that the Kr-NO interaction in the matrix is quite different because of the,presence of the surrounding Kr atoms acting on the NO molecule.MD simulations for isotropic potentials reasonably reproduce the experimental observables for the femtosecond response and the bubble size but do.not match spectroscopic results.A general overall view of the results suggests that,when the Kr-NO interaction takes place inside the matrix,potentials are rather symmetric and less repulsive than those for the triatomic system.
机译:NO(X 2II)-Kr和NO(A 2SIGMA +)-Kr系统的分子间电势已通过高精度的从头算计算得出。基1 2A'态[NO(X 2II) )-Kr]和激发态2 2A'态[NO(A 2SIGMA +)-Kr]的多参考单重和双配相互作用方法。势能面(PESs)显示了两个线性阱,一个是在三原子体系中构建了PES的解析表示,并用于在NO激发后对NO掺杂的matrix基质响应进行分子动力学(MD)模拟。比较结果显示了三种方法的MD结果势集:(1)各向异性从头算势[在动力学过程中没有分子方向固定并且被认为是一个点(其质心)],(2)各向同性从头算势(PESs Legendre多项式展开的各向同性部分)和(3)拟合Kr-NO这项工作的一个重要发现是,为Kr-NO三原子体系计算的各向异性和各向同性从头算势不适合描述晶体中NO杂质在Rydberg激发下的结构弛豫动力学。然而,基态的各向同性从头算势几乎与已发表的实验势能重叠,几乎与角度不对称无关。这一事实也体现在NO周围的径向分布函数中。但是,在激发态的情况下,各向同性从头算电势与拟合电势不同,这表明由于周围的Kr原子作用在NO分子上,基体中的Kr-NO相互作用存在很大差异。各向同性电势的MD模拟合理地再现了飞秒响应和气泡大小,但与光谱结果不匹配。结果w表明,当Kr-NO相互作用发生在基体内时,其电势比三原子系统的电势对称且排斥力小。

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