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Kinematically complete study of electron transfer and rearrangement processes in slow Ar16+-Ne collisions

机译:运动学上对慢Ar16 + -Ne碰撞中电子转移和重排过程的完整研究

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The complete kinematics of single-and double-electron capture from neon to Ar16+ was measured with a reaction microscope at a projectile energy of 3.2 keV/u (velocity v(p) = 0.36 a.u.). Not only the change of the electronic binding energies (the Q value) and the projectile scattering angles, but also (in the case of auto-ionization) the three-dimensional momentum vectors of the emitted electrons were determined. For single-electron capture, the Q-value spectrum shows strong population of both n = 7 and 8 states on the projectile, and weak contributions to n = 6 and 9 are also observed. In the case of double-electron capture, auto-ionizing double capture (ADC) dominates and the populations of (n, n') = (5, 7), (6, 6), (6, 7) and (6, 8) are observed, while true double capture (TDC) populates the (5, 7) state and asymmetric states of (5, n') with n' > 10. The experimental cross sections for Auger decay with the electron energy E-e plotted as a function of the Q value suggest the occurrence of target excitation accompanying the population of configurations (5, 7) and (6, 6). No essential difference is found in the differential cross sections for ADC and TDC, and the angular distributions suggest that two-step processes dominate the double capture.
机译:用反应显微镜在3.2 keV / u的射弹能量下(速度v(p)= 0.36 a.u.)测量从氖到Ar16 +的单电子和双电子捕获的完整运动学。不仅确定了电子结合能(Q值)和弹丸散射角的变化,而且还确定了(在自动电离的情况下)发射电子的三维动量矢量。对于单电子捕获,Q值谱显示了弹丸上n = 7和8个状态的强种群,并且还观察到对n = 6和9的弱贡献。在双电子捕获的情况下,自动电离双捕获(ADC)占主导地位,并且(n,n')的种群=(5,7),(6,6),(6,7)和(6,观察到8),而真正的双捕获(TDC)填充了(5,n')的(5,7)状态和n'> 10的不对称状态。俄歇衰变的实验截面与电子能量Ee Q值的函数表明,伴随着构型(5,7)和(6,6)的总体出现了目标激发。在ADC和TDC的差分横截面中没有发现本质上的区别,并且角度分布表明两步过程主导着双捕获。

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