Threshold laws and reaction zone dynamics of three-body Coulomb breakup

Chocian, P , Ihra, W and O'Mahony, P F

(1999)

Chocian, P , Ihra, W and O'Mahony, P F (1999) Threshold laws and reaction zone dynamics of three-body Coulomb breakup. Physical Review A, 60 (5).

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Abstract

Wannier theory is critically reexamined and compared with semiclassical S-matrix theory, which serves as a reference calculation. We find that for certain situations classical half-collision calculations with a fixed reaction zone radius strongly differ from the results of a full S-matrix treatment even at energies very close to threshold. By giving a parameter-free description of an energy-dependent reaction zone radius we take the initial state more accurately into account in the half-collision approach. This extension produces results for ionization probabilities which are in excellent agreement with the full-collision semiclassical S-matrix theory. [S1050-2947(99)09011-3].

Information about this Version

This is a Submitted version
This version's date is: 11/1999
This item is not peer reviewed

Link to this Version

https://repository.royalholloway.ac.uk/items/f8e469d4-0fb6-e48b-60d1-a7d46d3ca417/5/

Item TypeJournal Article
TitleThreshold laws and reaction zone dynamics of three-body Coulomb breakup
AuthorsChocian, P
Ihra, W
O'Mahony, P F
Uncontrolled KeywordsELECTRON-IMPACT IONIZATION, 2-ELECTRON ESCAPE, BEHAVIOR
DepartmentsFaculty of Science\Mathematics

Identifiers

doihttp://dx.doi.org/10.1103/PhysRevA.60.4160

Deposited by Research Information System (atira) on 03-Jul-2014 in Royal Holloway Research Online.Last modified on 03-Jul-2014


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