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100 1 _ |a Kumar, Deepak
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111 2 _ |a Fusion23 Conference
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|d 2023-11-19 - 2023-11-24
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245 _ _ |a Study of transfer-like fragments for $^{136}Xe$+$^{209} Bi/^{176}Yb$: Prospect for multinucleon transfer reactions at IGISOL
260 _ _ |a Les Ulis
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295 1 0 |a EPJ Web of Conferences, 306, 01036
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490 0 _ |a The European physical journal / Web of Conferences
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500 _ _ |a This is an open access article distributed under the terms of the Creative Commons Attribution License 4.0 (https://creativecommons.org/licenses/by/4.0/).
520 _ _ |a Multinucleon transfer (MNT) reactions have been demonstrated as a promising pathway to produce and study very neutron-rich heavy nuclei, which can enhance our understanding of the nuclear structural features relevant to the -process. Translead fragments were produced from the MNT reaction approach using Xe+ Bi at IGISOL utilizing an MNT gas cell. The Bi, Po, Po, and Po nuclei have been observed prominently in the ??-decay spectrum. The Geant4 simulation, which played a crucial role in optimizing the experimental parameters, reveals broader angular-energy distributions of MNT fragments released from a thick target compared to those observed from the GRAZING and Langevin models for a mono-energetic beam. Comparative yield analyses of MNT fragments for Xe+ Bi and Xe+ Yb reactions estimated using Geant4 Simulation as well as analytical formula support the production of many neutron-rich unknown mass nuclei in the rare-earth region.
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