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Pauli blocking and laser manipulation of the electron dynamics in atomic collisions

机译:原子碰撞中电子动力学的保利阻挡和激光操纵

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The role of the Pauli exclusion principle and laser-assisted processes in ion-atom collisions are investigated in a common theoretical framework. The treatment is based on a non-perturbative, quantal description of the electron dynamics driven by classical, external potentials, and the basis generator method is used to solve the resulting time-dependent Schroedinger (-type) equations. Pauli exclusion is studied for He~+(1s) collisions with neon and argon atoms, and laser-assisted electron transfer is investigated for the prototype one-electron scattering system He~(2+)-H(1s). Large effects are found in both cases, namely significant Pauli 'blocking' of capture to partially filled shells, and a strong enhancement of laser-assisted electron transfer at low collision energies.
机译:在共同的理论框架内研究了保利排斥原理和激光辅助过程在离子-原子碰撞中的作用。该处理基于对经典外部电势驱动的电子动力学的非扰动定量描述,并且使用基础生成器方法来求解所得的时间依赖性Schroedinger(-type)方程。研究了与氖和氩原子碰撞的He〜+(1s)碰撞的保利排斥,并研究了原型单电子散射系统He〜(2 +)-H(1s)的激光辅助电子转移。在这两种情况下都发现了很大的影响,即捕获到部分填充的炮弹的明显泡利“阻挡”,以及在低碰撞能量下大大增强了激光辅助电子的转移。

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