The 2+ 1 to 3+ 1 transition in 22na and the second class current problem

dc.contributor.advisorTriambak, Smarajit
dc.contributor.authorSingh, Bhivek
dc.date.accessioned2026-09-03T12:55:02Z
dc.date.available2026-09-03T12:55:02Z
dc.date.issued2025
dc.description.abstractThis thesis is motivated by searches of second-class currents with semi-leptonic β decays. The standard model predicts very small effects from second-class currents on account of the relatively small mass difference between the up and down quarks. Despite this prediction, detailed studies of specific nuclear β decays have suggested unusually large second-class currents that are contrary to expectations. The measured β − γ angular correlation from 22Na β decay presents one such example, where an unexpectedly large second-class form factor is required to describe the data. To further investigate the discrepancy, this work aims to determine the magnetic dipole (M1) strength of the 2+ 1 → 3 + 1 transition in 22Na, which is the analogue electromagnetic transition to the β decay. A 21Ne(p, γ) resonance reaction was used to produce the analogue 2 + 1 level. Angular distribution measurements were performed with high-purity Germanium detectors to determine the E2/M1 mixing ratio for the transition. Together with the conserved vector current hypothesis, these data were used to determine the weak magnetism form factor for 22Na β decay, as a means to resolve the anomaly
dc.identifier.urihttps://hdl.handle.net/10566/25340
dc.language.isoen
dc.publisherUniversity of the Western Cape
dc.subjectsecond-class currents
dc.subject22na
dc.subjectE2/M1
dc.subject21Ne(p
dc.subjectγ)
dc.titleThe 2+ 1 to 3+ 1 transition in 22na and the second class current problem
dc.typeThesis

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