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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Hyperspherical close-coupling calculations for charge-transfer cross sections in He2++H(1s) collisions at low energies - art. no. 052705
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Hyperspherical close-coupling calculations for charge-transfer cross sections in He2++H(1s) collisions at low energies - art. no. 052705

机译:低能量He2 ++ H(1s)碰撞中电荷转移截面的超球面紧密耦合计算-艺术。没有。 052705

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摘要

A theory for ion-atom collisions at low energies based on the hyperspherical close-coupling (HSCC) method is presented. In hyperspherical coordinates the wave function is expanded in analogy to the Born-Oppenheimer approximation where the adiabatic channel functions are calculated with B-spline basis functions while the coupled hyperradial equations are solved by a combination of R-matrix propagation and the slow/smooth variable discretization method. The HSCC method is applied to calculate charge-transfer cross sections for He2++H(1s)-->He+(n=2)+H+ reactions at center-of-mass energies from 10 eV to 4 keV. The results are shown to be in general good agreement with calculations based on the molecular orbital (MO) expansion method where electron translation factors (ETF's) or switching functions have been incorporated in each MO. However, discrepancies were found at very low energies. It is shown that the HSCC method can be used to study low-energy ion-atom collisions without the need to introduce the ad hoc ETF's, and the results are free from ambiguities associated with the traditional MO expansion approach. [References: 51]
机译:提出了一种基于超球面紧密耦合(HSCC)方法的低能离子-原子碰撞理论。在超球面坐标系中,波函数类似于Born-Oppenheimer近似展开,其中绝热通道函数是用B样条基函数计算的,而耦合的超辐射方程是通过R矩阵传播和慢/平滑变量的组合来求解的离散化方法。 HSCC方法用于计算质心能量为10 eV至4 keV的He2 ++ H(1s)-> He +(n = 2)+ H +反应的电荷转移截面。结果表明,该结果与基于分子轨道(MO)扩展方法的计算大体上吻合,其中每个MO中均包含电子翻译因子(ETF)或开关功能。然而,发现在非常低的能量上存在差异。结果表明,HSCC方法可用于研究低能离子原子碰撞,而无需引入临时ETF,并且结果没有与传统MO扩展方法相关的歧义。 [参考:51]

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