TY - CONF
AU - Grana-Gonzalez, A.
AU - Rodriguez-Sanchez, J. L.
AU - Gracia-Jimenez, G.
AU - Alavarez-Pol, H.
AU - Cortina-Gil, D.
AU - Atar, L.
AU - Audouin, L.
AU - Authelet, G.
AU - Besteiro, A.
AU - Blanchon, G.
AU - Boretzky, Konstanze
AU - Cabanelas, P.
AU - Casarejos, E.
AU - Cederkall, J.
AU - Chatillon, A.
AU - Corsi, A.
AU - Feijoo, M.
AU - Galaviz, D.
AU - Gasparic, I.
AU - Gernhäuser, R.
AU - Heilmann, Manuel
AU - Heinz, A.
AU - Holl, M.
AU - Jenegger, T.
AU - Ji, L.
AU - Johansson, H. T.
AU - Kiselev, Oleg
AU - Klenze, P.
AU - Knyazev, A.
AU - Körper, Daniel
AU - Kröll, T.
AU - Lihtar, I.
AU - Litvinov, Yury
AU - Löher, Bastian
AU - Morfouace, P.
AU - Mücher, D.
AU - Murillo Morales, S.
AU - Oberteilli, A.
AU - Panin, Valerii
AU - Park, J.
AU - Paschalis, S.
AU - Perea, A.
AU - Petri, M.
AU - Pirrone, S.
AU - Ponnath, L.
AU - Revel, A.
AU - H.-B, Rhee
AU - Rose, L.
AU - Rossi, D. M.
AU - Russotto, P.
AU - Simon, Haik
AU - Stott, A.
AU - Sun, Y.
AU - Sürder, C.
AU - Taieb, J.
AU - Taniuchi, R.
AU - Tengblad, O.
AU - Törnqvist, H. T.
AU - Velardita, S.
AU - Vesic, J.
AU - Voss, Bernd
TI - Quasi-free (p,2p) reactions in inverse kinematics for studying the fission yield dependence on temperature
IS - arXiv:2210.06054
PB - arXiv
M1 - GSI-2023-00871
M1 - arXiv:2210.06054
PY - 2023
N1 - Copyright owned by the author(s) under the terms of the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License (CC BY-NC-ND 4.0).
AB - Despite the recent experimental and theoretical progress in the investigation of the nuclear fission process, a complete description still represents a challenge in nuclear physics because it is a very complex dynamical process, whose description involves the coupling between intrinsic and collective degrees of freedom, as well as different quantum-mechanical phenomena. To improve on the existing data on nuclear fission, we produce fission reactions of heavy nuclei in inverse kinematics by using quasi-free (p,2p) scattering, which induce fission through particle-hole excitations that can range from few to ten's of MeV. The measurement of the four-momenta of the two outgoing protons allows to reconstruct the excitation energy of the fissioning compound nucleus and therefore to study the evolution of the fission yields with temperature. The realization of this kind of experiment requires a complex experimental setup, providing full isotopic identification of both fission fragments and an accurate measurement of the momenta of the two outgoing protons. This was realized recently at the GSI/FAIR facility and here some preliminary results are presented.
T2 - FAIR next generation scientists- 7th Edition Workshop (FAIRness2022)
CY - 23 May 2022 - 27 May 2022, Paralia (Greece)
Y2 - 23 May 2022 - 27 May 2022
M2 - Paralia, Greece
KW - Nuclear Experiment (nucl-ex) (Other)
KW - FOS: Physical sciences (Other)
LB - PUB:(DE-HGF)8
DO - DOI:10.48550/arXiv.2210.06054
UR - https://repository.gsi.de/record/347013
ER -