首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Dynamics of electronic states and spin-flip for photodissociation of dihalogens in matrices: Experiment and semiclassical surface-hopping and quantum model Simulations for F-2 and CIF in solid Ar
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Dynamics of electronic states and spin-flip for photodissociation of dihalogens in matrices: Experiment and semiclassical surface-hopping and quantum model Simulations for F-2 and CIF in solid Ar

机译:基质中二卤化物光解的电子态和自旋翻转动力学:固体Ar中F-2和CIF的实验,半经典表面跳变和量子模型模拟

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Three approaches are combined to study the electronic states' dynamics in the photodissociation of F-2 and OF in solid argon. These include (a) semiclassical surface-hopping simulations of the nonadiabatic processes involved. These simulations are carried out for the F-2 molecule in a slab of 255 argon atoms with periodic boundary conditions at the ends. The full manifold of 36 electronic states relevant to the process is included. (b) The second approach involves quantum mechanical reduced-dimensionality models for the initial processes induced by a pump laser pulse, which involve wavepacket propagation for the preoriented OF in the frozen argon lattice and incorporate the important electronic states. The focus is on the study of quantum coherence effects. (c) The final approach is femtosecond laser pump-probe experiments for OF in Ar. The combined results for the different systems shed light on general properties of the nonadiabatic processes involved, including the singlet to triplet and intertriplet transition dynamics. The main findings are (1) that the system remains in the initially excited-state only for a very brief, subpicosecond, time period. Thereafter, most of the population is transferred by nonadiabatic transitions to other states, with different time constants depending on the systems. (2) Another finding is that the dynamics is selective with regard to the electronic quantum numbers, including the A and Q quantum numbers, and the spin of the states. (3) The semiclassical simulations show that prior to the first "collision" of the photodissociated F atom with an Ar atom, the argon atoms can be held frozen, without affecting the process. This justifies the rigid-lattice reduced-dimensionality quantum model for a brief initial time interval. (4) Finally, degeneracies between triplets and singlets are fairly localized, but intertriplet degeneracies and near degeneracies can span an extensive range. The importance of quantum effects in photochemistry of matrix-isolated molecules is discussed in light of the results.
机译:结合三种方法,研究了固体氩中F-2和OF的光解离中的电子态动力学。其中包括(a)涉及的非绝热过程的半经典表面跳变模拟。这些模拟是在255个氩原子的平板中对F-2分子进行的,末端带有周期性边界条件。包括与该过程相关的36种电子状态的全部功能。 (b)第二种方法涉及由泵浦激光脉冲引起的初始过程的量子力学降维模型,该模型涉及冷冻氩晶格中预取向OF的波包传播,并包含重要的电子态。重点是研究量子相干效应。 (c)最终方法是在Ar中进行OF的飞秒激光泵浦探针实验。不同系统的综合结果揭示了所涉及的非绝热过程的一般性质,包括单重态到三重态以及三重态间的转变动力学。主要发现是(1)系统仅在很短的亚皮秒时间内保持在初始激发状态。此后,大多数人口通过非绝热转变转移到其他州,具体时间常数取决于系统。 (2)另一个发现是,动力学对电子量子数具有选择性,包​​括A和Q量子数以及状态的自旋。 (3)半经典模拟表明,在光解离的F原子与Ar原子首次“碰撞”之前,可以使氩原子保持冻结状态,而不会影响过程。这证明了在较短的初始时间间隔内刚体降维量子模型的合理性。 (4)最后,三胞胎和单胞胎之间的简并性是相当局部的,但三胞胎间的简并性和接近简并性可以跨越很宽的范围。根据结果​​讨论了量子效应在基质分离分子的光化学中的重要性。

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