Abstract
Recently, three-dimensional imaging of the ejected electrons following 100 MeV/amu C 6+ single ionization of helium led to the observation of a new structure not predicted by theory [M. Schulz et al., Nature (London) 422, 48 (2003)]. Instead of the usual “recoil lobe” centered on the momentum-transfer axis, a ring-shaped structure centered on the beam axis was observed. New measurements at 2 MeV/amu exhibit a similar structure, which is now predicted by theory. We argue that the same theory failed at 100 MeV/amu because the faster projectiles probe distances much closer to the nucleus, where our multiple-scattering model is expected to break down.
| Original language | American English |
|---|---|
| Journal | Physical Review Letters |
| Volume | 91 |
| DOIs | |
| State | Published - Dec 1 2003 |
Keywords
- Approximation theory
- Electrons
- Functions
- Heavy ions
- Ionization
- Matrix algebra
- Quantum theory
- Electron impact ionization
- First Born approximation (FBA)
- Atomic physics
Disciplines
- Physics
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