Institute of Experimental Physics, Faculty of Mathematics, Physics and Informatics, University of Gdańsk, ul Wita Stwosza 57, 80-308 Gdańsk, Poland.
Int J Mol Sci. 2024 Jul 17;25(14):7833. doi: 10.3390/ijms25147833.
The anticrossing spectra of the helium line λ1s4l D3,F-1s2p P3=447.2 nm emitted after electron capture by He+ ions in He+-He collisions were measured for projectile energies of 10-29 keV. Furthermore, considering the excited states' time evolution, the theoretical intensity functions were calculated. The electric field and density distributions of the target He atoms in the collision volume were taken into account, and by fitting the theoretical intensities to the measured ones, the post-collisional states of the charge-transferred He atoms were determined. The results indicate that for the intermediate projectile energy range, the electronic charge distributions were asymmetric, but the electric dipole moments did not change, as in the case of the target atoms excited directly in the collisions. This result shows that the Paul trap mechanism may play an important role in the charge transfer excitation in this energy range.
氦离子在氦-氦碰撞中通过电子俘获后发射的 λ1s4l D3,F-1s2p P3=447.2nm 氦线的反交叉能谱,在 10-29keV 的入射能下进行了测量。此外,考虑到激发态的时间演化,还计算了理论强度函数。考虑了碰撞体积中靶氦原子的电场和密度分布,并通过将理论强度拟合到测量强度,确定了荷移氦原子的碰撞后状态。结果表明,在中间入射能范围内,电子电荷分布是不对称的,但电偶极矩没有变化,这与直接在碰撞中激发的靶原子的情况相同。这一结果表明,在这个能量范围内,保罗陷阱机制可能在电荷转移激发中起重要作用。