Orientation dependence in multiple ionization of He 2 and Ne 2 induced by fast, highly charged ions: Probing the impact-parameter-dependent ionization probability in 11.37-MeV/u S 14 + collisions with He and Ne
Author | Kim, H. K. |
Author | Gassert, H. |
Author | Titze, J. N. |
Author | Waitz, M. |
Author | Voigtsberger, J. |
Author | Trinter, F. |
Author | Becht, J. |
Author | Kalinin, A. |
Author | Neumann, N. |
Author | Zhou, C. |
Author | Schmidt, L. Ph H. |
Author | Jagutzki, O. |
Author | Czasch, A. |
Author | Schöffler, M. |
Author | Merabet, H. |
Author | Schmidt-Böcking, H. |
Author | Jahnke, T. |
Author | Lüdde, H. J. |
Author | Cassimi, A. |
Author | Dörner, R. |
Available date | 2024-03-05T08:27:50Z |
Publication Date | 2014-02-07 |
Publication Name | Physical Review A - Atomic, Molecular, and Optical Physics |
Identifier | http://dx.doi.org/10.1103/PhysRevA.89.022704 |
Citation | Kim, H. K., Gassert, H., Titze, J. N., Waitz, M., Voigtsberger, J., Trinter, F., ... & Dörner, R. (2014). Orientation dependence in multiple ionization of He 2 and Ne 2 induced by fast, highly charged ions: Probing the impact-parameter-dependent ionization probability in 11.37-MeV/u S 14+ collisions with He and Ne. Physical Review A, 89(2), 022704. |
ISSN | 1050-2947 |
Abstract | We investigate orientation effects in the fragmentation of He2 and Ne2 induced by S14+ projectiles at an impact energy of 11.37 MeV/u. Multiple ionization shows a strong dependence on the orientation of the dimer axis with respect to the projectile beam axis. We attribute these effects to the impact-parameter-dependent ionization probability P(b) for the atomic scattering process S14++He and S14++Ne and compare our data with a Monte Carlo simulation. © 2014 American Physical Society. |
Sponsor | This work was funded by Seventh Framework Programme (FP7) - grant No. 262010. |
Language | en |
Publisher | American Physical Society |
Subject | fragmentation Monte Carlo simulation |
Type | Article |
Issue Number | 2 |
Volume Number | 89 |
ESSN | 1094-1622 |
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Mathematics, Statistics & Physics [740 items ]