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dc.rights.licenseCC-BY-NC-ND
dc.contributor.advisorGrimm, Thomas
dc.contributor.authorVuren, Thomas van
dc.date.accessioned2022-08-11T00:00:56Z
dc.date.available2022-08-11T00:00:56Z
dc.date.issued2022
dc.identifier.urihttps://studenttheses.uu.nl/handle/20.500.12932/42261
dc.description.abstractThe recent discovery of a large class of generalized global symmetries has significantly impacted our understanding of many phenomena in quantum field theory, ranging from anomalies to confinement with applications to both low- and high-energy physics. It is widely believed however, that exact global symmetries are forbidden in consistent theories of quantum gravity. By studying how generalized global symmetries are avoided in string theory, we may discover mechanisms which turn out to be general features of quantum gravity. In this thesis we will follow this approach and apply it to a large class of effective field theories obtained from Calabi-Yau compactification of type IIB string theory. After a review of these effective theories, we give an accessible introduction to generalized global symmetries with a focus on their role in the swampland program. Using asymptotic Hodge theory we then extract the most general limiting form of the action near boundaries in the complex structure moduli space. With these in hand, we enumerate the global symmetries that may emerge in these limits and explore how they are broken by stringy effects.
dc.description.sponsorshipUtrecht University
dc.language.isoEN
dc.subjectWe use asymptotic Hodge theory to study how generalized global symmetries are broken in type IIB Calabi-Yau compactifications
dc.titleGeneralized Global Symmetries and the Swampland
dc.type.contentMaster Thesis
dc.rights.accessrightsOpen Access
dc.subject.keywordsString Theory; Type IIB; Calabi-Yau; Compactification; Generalized Global Symmetries; Asymptotic Hodge Theory;
dc.subject.courseuuTheoretical Physics
dc.thesis.id8283


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