首页> 外文期刊>Journal of Physics, B. Atomic, Molecular and Optical Physics: An Institute of Physics Journal >Post-collision effects in the beam direction in fast ion-atom collisions
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Post-collision effects in the beam direction in fast ion-atom collisions

机译:快速离子-原子碰撞中沿束流方向的后碰撞效应

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Auger line shifts induced by post-collision interaction are studied for proton-atom (argon, neon) collisions. The energy shift is determined for Auger electrons emitted in the beam direction, in the Auger electron-projectile matching velocity region, for several acceptance angles for electron detection. For projectile velocities above the matching velocity, the Auger line energy shifts determined by the experiment agree with the values calculated by the existing theories, while for projectile velocities below the matching velocity, the measured and the calculated energy shifts show unambiguous disagreement. The advantage of the present work is the achievement of very small acceptance angles for electron detection (±0.2°, ±0.3°). For these acceptance angles, in the case when the projectile is slower than the Auger electron, the determined energy shift is negative, which is reported for the first time for fast-ion-atom collision processes.
机译:研究了碰撞后相互作用引起的俄歇线位移,以研究质子-原子(氩,氖)碰撞。对于在电子探测的多个接收角,在俄歇电子-弹丸匹配速度区域中,确定沿束方向发射的俄歇电子的能移。对于高于匹配速度的弹丸速度,由实验确定的俄歇线能量位移与现有理论计算的值一致,而对于低于匹配速度的弹丸速度,测得的能量和计算的能量位移显示出明确的分歧。本工作的优点是实现了非常小的电子检测接受角(±0.2°,±0.3°)。对于这些接受角,在弹丸比俄歇电子慢的情况下,确定的能量位移为负,这是首次报道的快速离子-原子碰撞过程。

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