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A fully state- and angle-resolved study of the H+HD - D+H-2 reaction: Comparison of a molecular beam experiment to ab initio quantum reaction dynamics

机译:H + HD-> D + H-2反应的完全状态和角度分辨研究:分子束实验与从头算量子反应动力学的比较

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We present the results of a joint experimental and theoretical investigation of the reaction dynamics of the H+HD --> D+H-2 chemical reaction. The experiment was performed using a crossed molecular beam apparatus that employed the Rydberg-atom time-of-flight detection scheme for the product D atom. The photolysis of a HI precursor molecule produced a beam source of hot H atoms, which, when crossed with a cold HD beam, yielded two well-defined center-of-mass collision energies, E-C = 0.498 and 1.200 eV. The resolution of the experiment was sufficient to allow the measurement of the rovibrationally state-resolved differential cross section from the ground state of the HD reagent. The reaction was modeled theoretically using a converged coupled channel scattering calculation employing the BKMP2 potential energy surface: The S matrix was computed on a grid of 56 energies in the range E-C = 0.245-1.551 eV. It is found that the experimental and theoretical state-to-state differential cross sections are in quantitative agreement at the two experimental energies. The geometric phase, which was not included in the calculation, is apparently not required at the energies considered. The spin statistics for the two identical protons is observed to have a dramatic effect on the rotational distribution of H-2 products, giving rise to a saw-toothed distribution with odd-j' >even-j'. The differential cross section for several of the product states exhibited a dramatic forward peak that may be the signature of trapped quantum states near the saddle point. A detailed analysis of the reaction attributes is presented based on the energy dependence of the computed S matrix. (C) 2002 American Institute of Physics. [References: 74]
机译:我们提出了H + HD-> D + H-2化学反应的反应动力学联合实验和理论研究的结果。使用交叉分子束装置进行实验,该装置对产物D原子采用Rydberg原子飞行时间检测方案。 HI前体分子的光解产生了热H原子的束源,当与冷的HD束交叉时,产生了两个明确定义的质心碰撞能,E-C = 0.498和1.200 eV。实验的分辨率足以允许从HD试剂的基态测量流动态分辨的微分截面。使用BKMP2势能面通过收敛耦合通道散射计算从理论上对反应进行建模:在56个能量的网格上计算S矩阵,其能量范围为E-C = 0.245-1.551 eV。发现在两种实验能量下,实验和理论状态间的微分截面在数量上一致。计算中未包括的几何相位显然不需要考虑的能量。观察到两个相同质子的自旋统计量对H-2产物的旋转分布产生了显着影响,从而产生了奇数j'>偶数j'的锯齿状分布。几种产物态的微分截面显示出一个显着的正向峰,该峰可能是靠近鞍点的捕获量子态的特征。基于计算出的S矩阵的能量依赖性,对反应属性进行了详细分析。 (C)2002美国物理研究所。 [参考:74]

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