arXiv:1602.07095·v1·Nuclear Experiment
Evolution of fusion hindrance for asymmetric systems at deep sub barrier energies
A. Shrivastavaa🇮🇳 · K. Mahata🇮🇳 · S.K. Pandit🇮🇳 · V. Nanal🇮🇳 · T. Ichikawa🇯🇵 · K. Hagino🇯🇵 · A. Navin🇫🇷 · C.S. Palshetkar🇮🇳 · V.V. Parkar🇮🇳 · K. Ramachandran🇮🇳 · P.C. Rout🇮🇳 · Abhinav Kumar🇮🇳 · A. Chatterjee🇮🇳 · S. Kailas🇮🇳
Abstract
Measurements of fusion cross-sections of 7Li and 12C with 198Pt at deep sub-barrier energies are reported to unravel the role of the entrance channel in the occurrence of fusion hindrance. The onset of fusion hindrance has been clearly observed in 12C + 198Pt system but not in 7Li + 198Pt system, within the measured energy range. Emergence of the hindrance, moving from lighter (6,7Li) to heavier (12C,16O) projectiles is explained employing a model that considers a gradual transition from a sudden to adiabatic regime at low energies. The model calculation reveals a weak effect of the damping of coupling to collective motion for the present systems as compared to that obtained for systems with heavier projectiles.
Comments: Accepted in Phys. Letts. B