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首页> 外文期刊>Journal of Physics, B. Atomic, Molecular and Optical Physics: An Institute of Physics Journal >Electron capture and excitation precesses in the Li(2s; 2p sigma, 2p pi)+H+ collision (0.1-10 keV)
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Electron capture and excitation precesses in the Li(2s; 2p sigma, 2p pi)+H+ collision (0.1-10 keV)

机译:Li(2s; 2p sigma,2p pi)+ H +碰撞(0.1-10 keV)中的电子俘获和激发进动

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摘要

Li(n = 2) to H*(n = 2, 3) and Li*(2p, n = 3) charge transfer and excitation processes are studied in the medium-energy range 0.1-10 keV. The static model includes a basis of 26 molecular states. The lithium atom is described using a model potential and the semiclassical impact parameter method with straight trajectories is used for the dynamical simulation. A common translation factor is included to account correctly for the electron translation movement. For this collision system, we calculate the total cross sections and probabilities for the different capture and excitation processes. The calculation reflects a Ly alpha radiation enhancement for the capture to H*(2p) from Li*(2p). A strong alignment effect in the capture processes to H*(2) is also shown and evaluated through the alignment parameter A(n = 2, 3). Finally, we provide a mechanism through the non-adiabatic radial and rotational couplings, showing the importance of the H*(3) and Li*(3) states in this collision. [References: 25]
机译:研究了Li(n = 2)至H *(n = 2、3)和Li *(2p,n = 3)在中能范围0.1-10 keV下的电荷转移和激发过程。静态模型包括26个分子状态的基础。使用模型势来描述锂原子,并使用具有直线轨迹的半经典冲击参数方法进行动力学模拟。包括一个共同的平移因子,以正确说明电子平移运动。对于该碰撞系统,我们计算了不同捕获和激发过程的总横截面和概率。该计算反映了从Li *(2p)捕获到H *(2p)的Lyα辐射增强。还显示了在捕获过程中对H *(2)的强对齐效果,并通过对齐参数A(n = 2,3)对其进行了评估。最后,我们通过非绝热的径向和旋转耦合提供了一种机制,显示了在这种碰撞中H *(3)和Li *(3)状态的重要性。 [参考:25]

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