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首页> 外文期刊>The Journal of Chemical Physics >THEORY OF DIATOMIC PHOTODISSOCIATION INVOLVING SEVERAL ATOMIC TERM LIMITS - QUANTUM INTERFERENCE AND PRODUCT CONTROL IN OH PHOTODISSOCIATION
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THEORY OF DIATOMIC PHOTODISSOCIATION INVOLVING SEVERAL ATOMIC TERM LIMITS - QUANTUM INTERFERENCE AND PRODUCT CONTROL IN OH PHOTODISSOCIATION

机译:涉及多个原子期限的电离光解理论-OH光解中的量子干扰和产物控制

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A quantum mechanical theory is described for diatomic photodissociation processes to atomic fine structure states for which more than one atomic term limit must be explicitly considered. The theory is employed to treat the photodissociation of OH molecule. Two frame transformation matrices are constructed and incorporated, for the first time, to describe the correlations between two oxygen terms [O(P-3) and O(D-1)] and the adiabatic Born-Oppenheimer states. We find that very interesting dynamics results from the quantum interferences between electronic states. Near the dissociation threshold to O(3P), asymptotic interactions between asymptotically degenerate states correlating to O(P-3) term are shown to manifest as multichannel resonances. At energies between thresholds to O(P-3) and O(D-1) terms, quantum interferences between A (2) Sigma(+) and (2) Sigma(-) states are predicted to result in asymmetric resonances. Partial cross sections to the triplet oxygen fine structure states O(P-3(j), j = 0,1,2) exhibit different degrees of asymmetry due to the combined effects of the quantum interference between A (2) Sigma(+) and (2) Sigma(-) states crossing in the Franck-Condon region, and the asymptotic interactions among (4) Sigma(-), (2) Sigma(-), and (4) Pi states correlating to O(P-3). Consequently, the branching ratios of O(P-3(j), j = 0,1,2) exhibit strong variations across the asymmetric resonances, suggesting the possibility of controlling the product distributions by tuning at the excitation wavelengths across a single asymmetric resonance in one-photon process. Interference between the dissociative (2) Delta and 2 (2) Pi states, correlating with O(D-1) term, are shown to give rise to highly oscillatory variations of the dissociation cross sections to O(D-1) at energies above the threshold to O(D-1). (C) 1995 American Institute of Physics. [References: 42]
机译:描述了一种用于双原子光解离过程至原子精细结构状态的量子力学理论,对于该结构必须明确考虑一个以上的原子项极限。该理论被用于处理OH分子的光解离。首次构造并合并了两个框架变换矩阵,以描述两个氧项[O(P-3)和O(D-1)]与绝热的Born-Oppenheimer态之间的相关性。我们发现,非常有趣的动力学是由电子态之间的量子干扰引起的。在接近O(3P)的解离阈值附近,与O(P-3)项相关的渐近退化状态之间的渐近相互作用显示为多通道共振。在O(P-3)和O(D-1)项的阈值之间的能量下,预计A(2)Sigma(+)和(2)Sigma(-)状态之间的量子干扰会导致不对称共振。三重态氧精细结构态O(P-3(j),j = 0,1,2)的部分截面由于A(2)Sigma(+)之间的量子干涉的综合作用而表现出不同的不对称度。 (2)在Franck-Condon地区相交的Sigma(-)状态,以及(4)Sigma(-),(2)Sigma(-)和(4)与O(P- 3)。因此,O(P-3(j),j = 0,1,2)的分支比在整个非对称共振中表现出强烈的变化,这表明通过调谐单个非对称共振的激发波长来控制产物分布的可能性在单光子过程中。与O(D-1)项相关的解离(2)Delta和2(2)Pi态之间的干扰显示,在上述能量下,解离截面对O(D-1)的振荡非常剧烈。 O(D-1)的阈值。 (C)1995年美国物理研究所。 [参考:42]

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