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Quantum critical responses via holographic models and conformal perturbation theory

dc.contributor.authorSierens, Todd
dc.date.accessioned2017-06-15T15:45:01Z
dc.date.available2017-06-15T15:45:01Z
dc.date.issued2017-06-15
dc.date.submitted2017
dc.description.abstractWe investigate response functions near quantum critical points, allowing for finite temperature and a mild deformation by a relevant scalar. When the quantum critical point is described by a conformal field theory, we use conformal perturbation theory and holography to determine the two leading corrections to the scalar two-point function and to the conductivity. We build a bridge between the couplings fixed by conformal symmetry with the interaction couplings in the gravity theory. Knowledge of the high-frequency response allows us to derive non-perturbative sum rules. We construct a minimal holographic model that allows us to numerically obtain the response functions at all frequencies, independently confirming the corrections to the high-frequency response functions. In addition to probing the physics of the ultraviolet, the holographic model probes the physics of the infrared giving us qualitative insight into new physics scalings. We briefly investigate the hydrodynamic modes that occur in the field theory by observing the diffusive nature of the gauge field deep in the bulk using the membrane paradigm, allowing us to calculate the diffusion constant and DC conductivity.en
dc.identifier.urihttp://hdl.handle.net/10012/12013
dc.language.isoenen
dc.pendingfalse
dc.publisherUniversity of Waterlooen
dc.subjectHolographyen
dc.subjectGauge gravity dualityen
dc.subjectConformal field theoryen
dc.subjectAnti de-Sitter / conformal field theory correspondenceen
dc.subjectTheoretical physicsen
dc.subjectHigh energy physicsen
dc.titleQuantum critical responses via holographic models and conformal perturbation theoryen
dc.typeDoctoral Thesisen
uws-etd.degreeDoctor of Philosophyen
uws-etd.degree.departmentPhysics and Astronomyen
uws-etd.degree.disciplinePhysicsen
uws-etd.degree.grantorUniversity of Waterlooen
uws.contributor.advisorMyers, Robert
uws.contributor.affiliation1Faculty of Scienceen
uws.peerReviewStatusUnrevieweden
uws.published.cityWaterlooen
uws.published.countryCanadaen
uws.published.provinceOntarioen
uws.scholarLevelGraduateen
uws.typeOfResourceTexten

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