Experiments in Solenoidal Spectrometers — from Isospin Breaking to Nuclear Fission
Doktorsavhandling, 2026
The first experiment at Argonne National Laboratory, using the HELIOS setup, studied breaking of the isospin symmetry in excited states of 18O and 18F. Relative spectroscopic factors of the populated states are compared to investigate the similarity of isobaric analogue states in the isospin multiplet A = 18. The results show overall good agreement between analogue states and consistency with shell-model predictions for most levels. No statistically significant evidence for enhanced isospin symmetry breaking was observed within the experimental uncertainties.
The second part of the thesis focuses on extending the ISS setup at ISOLDE, CERN, to allow studies of fission of neutron-rich isotopes. To cope with the limited intensity available at radioactive beam facilities, an efficient setup for the detection of fission fragments was designed, installed, and commissioned. The setup performed as expected and enabled a proof-of-principle measurement of the fission of 233U. While the full extraction of physics observables has not yet been performed, the work demonstrates the feasibility of the method and establishes a foundation for future studies of fission in exotic nuclei.
Isospin
Isobaric Analogue States
Nuclear Shell Model
Nuclear Physics
ISS
HELIOS
Nuclear Fission
ISOLDE
r-process
CERN
ANL
Författare
Anna Kawecka
Subatomär, högenergi- och plasmafysik 1
This thesis tackles two key questions. First, it studies isospin symmetry – how similar protons and neutrons behave – and investigates how this symmetry is broken. Second, it explores fission in neutron-rich nuclei, a process crucial for forming heavy elements in astrophysical events. Both topics are examined using the same experimental method: reactions transfering a neutron in inverse kinematics with advanced spectrometers. This approach allows precise probing of nuclear structure, even in unstable nuclei, providing data to test theories and improve our understanding of fundamental nuclear behavior.
Hur bildas tunga grundämnen i krockar mellan neutronstjärnor?
Knut och Alice Wallenbergs Stiftelse (2020.0076), 2021-01-01 -- 2025-12-31.
Ämneskategorier (SSIF 2025)
Annan fysik
Subatomär fysik
DOI
10.63959/chalmers.dt/5884
ISBN
978-91-8103-427-1
Doktorsavhandlingar vid Chalmers tekniska högskola. Ny serie: 5884
Utgivare
Chalmers
PJ-salen, Kemigården 1, Chalmers
Opponent: Director de Recherche Araceli Lopez-Martens, CNRS, France.