HNPS Advances in Nuclear Physics· 2019Q4
Opportunities for nuclear reaction studies at future facilities
- 1citations
- Q4SCImago
- 2019year
Short summary
Future radioactive ion beam (RIB) and high-power laser facilities will enable new nuclear reaction studies, including direct fission barrier measurements of neutron-deficient nuclei and production of very neutron-rich nuclei via multi-nucleon transfer.
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Abstract
Opportunities for investigations of nuclear reactions at the future nuclear physics facilities such as radioactive ion beam facilities and high-power laser facilities are considered. Post-accelerated radioactive ion beams offer possibilities for study of the role of isospin asymmetry in the reaction mechanisms at various beam energies. Fission barrier heights of neutron-deficient nuclei can be directly determined at low energies. Post-accelerated radioactive ion beams, specifically at the future facilities such as HIE-ISOLDE, SPIRAL-2 or RAON-RISP can be also considered as a candidate for production of very neutron-rich nuclei via mechanism of multi-nucleon transfer. High-power laser facilities such as ELI-NP offer possibilities for nuclear reaction studies with beams of unprecedented properties. Specific cases such as ternary reactions or even production of super-heavy elements are considered.
The authors' abstract, as published at the source. HNPS Advances in Nuclear Physics, 2019 · DOI ↗
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RadiationPhysics and Astronomy