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Isomeric fission yield ratios for odd-mass Cd and In isotopes using the phase-imaging ion-cyclotron-resonance technique

Authors :
Rakopoulos, Vasileios
Lantz, Mattias
Pomp, Stephan
Solders, Andreas
Al-Adili, Ali
Canete, Laetitia
Eronen, Tommi
Jokinen, Ari
Kankainen, Anu
Mattera, Andrea
Moore, Iain D.
Nesterenko, Dmitrii
Reponen, Mikael
Rinta-Antila, Sami
de Roubin, Antoine
Vilén, Markus
Österlund, Michael
Penttilä, Heikki
Rakopoulos, Vasileios
Lantz, Mattias
Pomp, Stephan
Solders, Andreas
Al-Adili, Ali
Canete, Laetitia
Eronen, Tommi
Jokinen, Ari
Kankainen, Anu
Mattera, Andrea
Moore, Iain D.
Nesterenko, Dmitrii
Reponen, Mikael
Rinta-Antila, Sami
de Roubin, Antoine
Vilén, Markus
Österlund, Michael
Penttilä, Heikki
Publication Year :
2019

Abstract

Isomeric yield ratios for the odd-A isotopes of Cd119-127 and In119-127 from 25-MeV proton-induced fission on natural uranium have been measured at the JYFLTRAP double Penning trap, by employing the phase-imaging ion-cyclotron-resonance technique. With the significantly improved mass resolution of this novel method isomeric states separated by 140 keV from the ground state, and with half-lives of the order of 500 ms, could be resolved. This opens the door for obtaining new information on low-lying isomers, which are important for nuclear structure, fission, and astrophysics. In the present work the experimental isomeric yield ratios are used for the estimation of the root-mean-square angular momentum J(rms) of the primary fragments. The results show a dependency on the number of unpaired protons and neutrons, where the odd-Z In isotopes carry larger angular momenta. The deduced values of J(rms) display a linear relationship when compared with the electric quadrupole moments of the fission products.

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1235203970
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1103.PhysRevC.99.014617