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Collisional and photoinitiated reaction dynamics in the ground electronic state of Ca-HCl

机译:Ca-HCl基电子态的碰撞和光引发反应动力学

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Ca+HCl(upsilon,j) reactive collisions were studied for different rovibrational states of the HCl reactant using wave-packet calculations in reactant Jacobi coordinates. A recently proposed potential-energy surface was used with a barrier of approximate to 0.4 eV followed by a deep well. The possibility of an insertion mechanism due to this last well has been analyzed and it was found that once the wave packet passes over the barrier most of it goes directly to CaCl+H products, which shows that the reaction dynamics is essentially direct. It was also found that there is no significant change in the reaction efficiency as a function of the initial HCl rovibrational state, because CaHCl at the barrier has an only little elongated HCl bond. Near the threshold for reaction with HCl(upsilon=0), however, the reaction shows significant steric effects for j>0. In a complementary study, the infrared excitation from the Ca-HCl van der Waals well was simulated. The spectrum thus obtained shows several series of resonances which correspond to quasibound states correlating to excited HCl(upsilon) vibrations. The Ca-HCl binding energies of these quasibound states increase dramatically with upsilon, from 75 to 650 cm(-1), because the wave function spreads increasingly over larger HCl bond lengths. Thus it explores the region of the barrier saddle point and the deep insertion well. Although also the charge-transfer contribution increases with upsilon, the reaction probability for resonances of the upsilon=2 manifold, which are well above the reaction threshold, is still negligible. This explains the relatively long lifetimes of these upsilon=2 resonances. The reaction probability becomes significant at upsilon=3. Our simulations have shown that an experimental study of this type will allow a gradual spectroscopic probing of the barrier for the reaction. (C) 2005 American Institute of Physics.
机译:利用反应物雅可比坐标中的波包计算,研究了HCl反应物不同旋转状态下Ca + HCl(upsilon,j)反应性碰撞。使用最近提出的势能表面,其势垒约为0.4 eV,随后是深阱。分析了由于最后一口井而引起的插入机制的可能性,并且发现,一旦波包越过障碍,大部分波直接进入CaCl + H产物,这表明反应动力学本质上是直接的。还发现,作为初始HCl旋转振动状态的函数,反应效率没有显着变化,因为在势垒处的CaHCl仅具有很少的伸长的HCl键。但是,在与HCl反应的阈值附近(upsilon = 0),对于j> 0,该反应显示出明显的空间效应。在一项补充研究中,模拟了Ca-HCl van der Waals井的红外激发。如此获得的频谱显示出几个系列的共振,这些共振对应于与激发的HCl(upsilon)振动相关的准结合态。这些准键合态的Ca-HCl结合能随着upsilon的增加而急剧增加,从75到650 cm(-1),这是因为波函数在更大的HCl键长度上逐渐扩展。因此,它探索了障碍鞍点和深插入井的区域。尽管电荷转移的贡献随着upsilon的增加而增加,但upsilon = 2歧管共振的反应概率远高于反应阈值,仍然可以忽略不计。这解释了这些upsilon = 2共振的相对较长的寿命。当upsilon = 3时,反应概率变得很大。我们的模拟表明,这种类型的实验研究将允许逐步地光谱探测反应的障碍。 (C)2005美国物理研究所。

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