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首页> 外文期刊>International Journal of Quantum Chemistry >Acceleration Effects in Slow Ion-Atom Collisions from a First-Principles Dynamics
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Acceleration Effects in Slow Ion-Atom Collisions from a First-Principles Dynamics

机译:从第一性原理动力学的慢离子原子碰撞中的加速效应

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Slow ion-atom collisions can be described within a first-principles molecular dynamics based on eikonal wave functions for the nuclei and the time-dependent Hartree-Fock(TDHF) approximation for electrons that self-consistently couples the electronic and nuclear degrees of freedom. By expanding the molecular orbitals in traveling atomic orbitals containing electron translation factors, it is possible to eliminate spurious couplings between same-center orbitals at asymptotic distances, and this generates a term in the density matrix equations proportional to the nuclear accelerations. We examine the effect of this acceleration term on Lowdin atomic populations for H~+ + H(1s) and He~(2+) + H(1s) collisions, for varying collision energies and impact parameters. We find significant increases in atomic populations for an intermediate range of energies going from several tens to several hundreds of electron volts, and for low impact parameters, in the case of the H~+ + H(1s) collision.
机译:慢离子-原子碰撞可以在第一原理的分子动力学中进行描述,该动力学基于原子核的固有波函数以及电子的时间相关的Hartree-Fock(TDHF)近似,该电子自洽地耦合电子和核自由度。通过扩展包含电子平移因子的行进原子轨道中的分子轨道,可以消除渐近距离处的相同中心轨道之间的虚假耦合,从而在密度矩阵方程中生成与核加速度成比例的项。我们针对不同的碰撞能量和碰撞参数,针对H〜+ + H(1s)和He〜(2+)+ H(1s)碰撞,研究了该加速度项对Lowdin原子种群的影响。我们发现,在H〜+ + H(1s)碰撞的情况下,从几十到几百个电子伏特的中间范围的能量,对于低冲击参数,原子总数将显着增加。

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