| He2+ + Li0(2s) → He+ + Li+ | total |
| He2+ + Li0(2s) → He+(n=2) + Li+ | n-resolved |
| He2+ + Li0(2s) → He+(2s) + Li+ | nl-resolved |
| He2+ + Li0(2s) → He+(2p) + Li+ | nl-resolved |
| He2+ + Li0(2s) → He+(n=3) + Li+ | n-resolved |
| He2+ + Li0(2s) → He+(3s) + Li+ | nl-resolved |
| He2+ + Li0(2s) → He+(3p) + Li+ | nl-resolved |
| He2+ + Li0(2s) → He+(3d) + Li+ | nl-resolved |
| He2+ + Li0(2s) → He+(n=4) + Li+ | n-resolved |
| He2+ + Li0(2s) → He+(4s) + Li+ | nl-resolved |
| He2+ + Li0(2s) → He+(4p) + Li+ | nl-resolved |
| He2+ + Li0(2s) → He+(4d) + Li+ | nl-resolved |
| He2+ + Li0(2s) → He+(4f) + Li+ | nl-resolved |
------------------------------------------------------------------------------------- Comments: All data by J. Schweinzer (source: "ao_He2Li_87_79") using the atomic orbital close coupling method (1). These calculations were compared with measurements by Turkstra(1) and Kadota et. al.(2) and are in very good agreement. (1) to be published in Phys Rev. A (1999) (2) Kadota et al. .....(1984) Producers: J.W. Turkstra, G. Lubinski and R. Hoekstra Date: 9 April 1999 Updates: ------------------------------------------------------------------------------------------ --------------------------------------------------------------------------------- ---------------------------------------------------------------------------------