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Mechanism and control of the F+H-2 reaction at low and ultralow collision energies

机译:低和超低碰撞能量下F + H-2反应的机理和控制

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This article uses theoretical methods to study the dependence on stereodynamical factors of the mechanism and reactivity of the F+H-2 reaction at low and ultralow collision energies. The impact of polarization of the H-2 reactant on total and state-to-state integral and differential cross sections is analyzed. This leads to detailed pictures of the reaction mechanism in the cold and ultracold regimes, accounting, in particular, for distinctions associated with the various product states and scattering angles. The extent to which selection of reactant polarization allows for external control of the reactivity and reaction mechanism is assessed. This reveals that even the simplest of reactant polarization schemes allows for fine, product state-selective control of differential and (for reactions involving more than a single, zero orbital angular momentum partial wave) integral cross sections. (c) 2006 American Institute of Physics.
机译:本文使用理论方法研究了在低和超低碰撞能量下F + H-2反应机理和立体反应性对立体动力学因素的依赖性。分析了H-2反应物极化对总和状态间积分和微分截面的影响。这导致了在冷态和超冷态下反应机理的详细描述,尤其是考虑到与各种产物状态和散射角有关的区别。评估选择反应物极化的程度可以对反应性和反应机理进行外部控制。这表明,即使是最简单的反应物极化方案,也可以对差分和(对于涉及多个以上单个,零轨道角动量分波的反应)积分截面进行精细的乘积状态选择性控制。 (c)2006年美国物理研究所。

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