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HNPS Advances in Nuclear Physics· 2019Q4

Opportunities for nuclear reaction studies at future facilities

M. Veselský, Jozef Klimo, Nikoleta Vujisicova, Georgios A. Souliotis

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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Field: Radiation

RadiationPhysics and Astronomy