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首页> 外文期刊>Russian journal of physical chemistry, B. >Mechanism of the direct three-body recombination of atomic ions in a central collision
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Mechanism of the direct three-body recombination of atomic ions in a central collision

机译:中心碰撞中原子离子的直接三体重组机理

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The detailed dynamics of direct three-body recombination of the Cs ~+ and Br ~- heavy ions in the presence of the Xe atom as a third body is studied by the quasiclassical trajectory method. A potential energy surface that quantitatively correctly describes the dynamics of the reverse process of ion formation induced by collisions of CsBr with Xe is used. Depending on the impact parameter of the third body, the stabilization of the product molecule proceeds by several different mechanisms. At impact parameters of b _R ≤ 7 au, the stabilization of the nascent molecule is largely controlled the repulsion potential between one of the ions or both the ions and the third body. The energy transferred to the third body does not depend directly on the repulsive potential energy between the ion and the third body. The phase of collision of the ions at the instant of closest approach plays a key role in the process of energy transfer. For collinear collision configurations of the three particles, the ion-Xe shallow potential wells are demonstrated to produce a noticeable effect.
机译:通过准经典轨迹方法研究了在Xe原子作为第三体存在时Cs〜+和Br〜-重离子直接三体复合的详细动力学。使用了能正确定量描述CsBr与Xe碰撞引起的离子形成逆过程动力学的势能表面。取决于第三体的冲击参数,产物分子的稳定通过几种不同的机理进行。在b _R≤7 au的冲击参数下,新生分子的稳定在很大程度上控制了一个离子或两个离子与第三体之间的排斥势。传递给第三体的能量并不直接取决于离子与第三体之间的排斥势能。在最接近的瞬间,离子的碰撞阶段在能量转移过程中起关键作用。对于这三个粒子的共线碰撞构型,离子氙浅势阱被证明会产生明显的影响。

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