Calcium excess in novae: Beyond nuclear physics uncertainties

dc.contributor.authorLoria, Mallory
dc.contributor.supervisorHerwig, Falk
dc.contributor.supervisorRuiz, Chris
dc.date.accessioned2025-01-03T18:17:24Z
dc.date.available2025-01-03T18:17:24Z
dc.date.issued2024
dc.degree.departmentDepartment of Physics and Astronomy
dc.degree.levelMaster of Science MSc
dc.description.abstractWe examine Ca abundances in classical novae from spectroscopic observations spanning 65 years and investigate whether they are systematically high compared to those predicted by nova models. For the first time, we perform Monte Carlo simulations assessing the impact of nuclear reaction rate uncertainties on abundances predicted by multi-zone nova models. We compare these results with similar simulations using one-zone nova models. While the Ca abundances in the models are sensitive to variations of rates of the reactions 37Ar(p, γ)38K and 38K(p, γ)39Ca, the nuclear physics uncertainties of these reactions cannot account for the discrepancy between the observed and predicted Ca abundances in novae. We also investigate the impact of the 19F(p, γ)/19F(p, α) branching ratio that controls hot CNO cycle breakout on Ca production by increasing this ratio by factors of 10 and 100, finding no increase in the Ca abundance. To explain the peculiar abundances observed in novae with high Ca abundances, alternative mixing scenarios with different pre-mixed material are explored. The dust fractionation hypothesis, which suggests that the Ca overabundance could be explained by Ca being trapped in dust, is ruled out due to the simultaneous overabundance of Ar, which would not be expected to be trapped in dust. Furthermore, the overabundance of Ca has important implications for measuring 7Be in nova ejecta, as Ca lines are used to estimate 7Be abundances. If the Ca abundance is incorrectly determined, it could lead to inaccurate 7Be abundance estimates. Possible alternative explanations for the observed Ca overabundance are discussed.
dc.description.scholarlevelGraduate
dc.identifier.urihttps://hdl.handle.net/1828/20905
dc.languageEnglisheng
dc.language.isoen
dc.rightsAvailable to the World Wide Web
dc.subjectClassical Novae
dc.subjectNuclear Reactions
dc.subjectAstrophysics
dc.subjectNucleosynthesis
dc.titleCalcium excess in novae: Beyond nuclear physics uncertainties
dc.typeThesis

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