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TIME- AND FREQUENCY-DOMAIN PROPERTIES OF LIGHT EMITTED IN SLOW ION-ATOM COLLISIONS

机译:慢离子原子碰撞中光的时域和频域特性

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We describe light emission from the complex formed during ion-atom collisions, that arises from electronic charge transfer and the related oscillatory dipole of the complex. This is treated in an eikonal/time-dependent Hartree-Fock approach which accounts for coupling of electronic and nuclear motions and generates the rime-dependent dipole of the complex. Calculations were done for H++H with a basis set of travelling atomic functions, for collision energies of 100, 250, and 1000 eV, to obtain the energy emitted per solid angle versus both time and the light frequency. Results are presented for the intensity components of the light emitted parallel and perpendicular to the incoming projectile H+ velocity. Light emission is found to last several femtoseeonds, and to be distributed over ultraviolet frequencies. The intensity of light emitted by the complex H-2(+) increases as collision energies are lowered. (C) 1997 American Institute of Physics. [References: 47]
机译:我们描述了在离子-原子碰撞过程中形成的复合物的光发射,这是由于电子电荷转移和复合物的相关振荡偶极子引起的。这可以通过电子/时间依赖的Hartree-Fock方法进行处理,该方法考虑了电子运动与核运动的耦合并生成了络合物依赖的偶极子。使用行进原子函数的基础集对H ++ H进行了计算,对于100、250和1000 eV的碰撞能量,获得了每个立体角相对于时间和光频率发射的能量。给出了与入射射弹H +速度平行和垂直发射的光强度分量的结果。发现光发射持续数个飞秒,并分布在紫外线频率上。配合物H-2(+)发出的光的强度随着碰撞能量的降低而增加。 (C)1997美国物理研究所。 [参考:47]

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