In-beam spectroscopy of ⠷²Ge

dc.contributor.advisorRoux, D G
dc.contributor.authorHenninger, Katharine Rose
dc.date.accessioned2026-03-03T13:37:59Z
dc.date.issued2012
dc.description.abstractThe high-spin states of the nucleus ⠷²Ge were populated via the ⠷°Zn(a,2n)⠷²Ge fusion-evaporation reaction at a beam-energy of 30 MeV. The ')'-decays were observed with the AFRODITE spectrometer array at iThemba LABS (Faure, South Africa). Twenty-seven new transitions, 18 new levels and 2 new bands were added to the ⠷²Ge level scheme, and several corrections were made to t he previously-known level scheme. Transitions were characterised using Directional Correlation from Oriented states (DCO) and polarisation measurements, and spin-parity assignments were made for 7 new levels. Spin and parity were also reassigned to a previously-known structure. One of the new bands was ident ified as part of an octupole-vibrational band. No tetrahedral states were observed in the scheme despite N = 40 and Z = 32 having been identified as tetrahedral magic numbers. The meaning of the new 14⠺ yrast level for the underlying structure of the ground state band is discussed
dc.description.degreeMaster's thesis
dc.description.degreeMSc
dc.format.extent112 pages
dc.format.mimetypeapplication/pdf
dc.identifier.otherhttp://hdl.handle.net/10962/d1018233
dc.identifier.urihttps://researchrepository.ru.ac.za/handle/123456789/4257
dc.languageEnglish
dc.publisherRhodes University, Faculty of Science, Department of Physics
dc.rightsHenninger, Katharine Rose
dc.subjectNuclear shapes
dc.subjectHyperfine structure
dc.titleIn-beam spectroscopy of ⠷²Ge
dc.typeAcademic thesis

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