Theoretical study of the α+d→6Li+γ astrophysical capture process in a three-body model. II. Reaction rates and primordial abundance
dc.contributor.author | Tursunov, E. | |
dc.contributor.author | Turakulov, S. | |
dc.contributor.author | Kadyrov, Alisher | |
dc.contributor.author | Bray, Igor | |
dc.date.accessioned | 2019-02-19T04:17:40Z | |
dc.date.available | 2019-02-19T04:17:40Z | |
dc.date.created | 2019-02-19T03:58:20Z | |
dc.date.issued | 2018 | |
dc.identifier.citation | Tursunov, E. and Turakulov, S. and Kadyrov, A. and Bray, I. 2018. Theoretical study of the α+d→6Li+γ astrophysical capture process in a three-body model. II. Reaction rates and primordial abundance. Physical Review C. 98 (5): Article ID 055803. | |
dc.identifier.uri | http://hdl.handle.net/20.500.11937/74653 | |
dc.identifier.doi | 10.1103/PhysRevC.98.055803 | |
dc.description.abstract |
The astrophysical S factor and reaction rate of the direct capture process a+d?Li6+?, as well as the abundance of the Li6 element, are estimated in a three-body model. The initial state is factorized into the deuteron bound state and the a+d scattering state. The final nucleus Li6(1+) is described as a three-body bound state a+n+p in the hyperspherical Lagrange-mesh method. Corrections to the asymptotics of the overlap integral in the S and D waves have been done for the E2 S factor. The isospin forbidden E1 S factor is calculated from the initial isosinglet states to the small isotriplet components of the final Li6(1+) bound state. It is shown that the three-body model is able to reproduce the newest experimental data of the LUNA Collaboration for the astrophysical S factor and the reaction rates within the experimental error bars. The estimated Li6/H abundance ratio of (0.67±0.01)×10-14 is in a very good agreement with the recent measurement (0.80±0.18)×10-14 of the LUNA Collaboration. | |
dc.publisher | The American Physical Society | |
dc.title | Theoretical study of the α+d→6Li+γ astrophysical capture process in a three-body model. II. Reaction rates and primordial abundance | |
dc.type | Journal Article | |
dcterms.source.volume | 98 | |
dcterms.source.number | 5 | |
dcterms.source.issn | 2469-9985 | |
dcterms.source.title | Physical Review C | |
curtin.department | School of Electrical Engineering, Computing and Mathematical Science (EECMS) | |
curtin.accessStatus | Fulltext not available |
Files in this item
Files | Size | Format | View |
---|---|---|---|
There are no files associated with this item. |