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Numerical Methods for Finite Temperature Effects in Quantum Field Theory

dc.contributor.advisorSteele, Tom
dc.contributor.advisorHarnett, Derek
dc.contributor.committeeMemberTanaka, Kaori
dc.contributor.committeeMemberDegenstein, Doug
dc.contributor.committeeMemberSoteros, Chris
dc.contributor.committeeMemberMcWilliams, Kathryn
dc.creatorLi, Siyuan
dc.date.accessioned2021-12-23T16:47:27Z
dc.date.available2021-12-23T16:47:27Z
dc.date.created2021-12
dc.date.issued2021-12-23
dc.date.submittedDecember 2021
dc.date.updated2021-12-23T16:47:28Z
dc.description.abstractThe basic structure of quantum field theory that is used to describe the Standard Model of fundamental interactions of nature is usually formulated for zero temperature. However, the effects of temperature are extremely important for understanding a number of physical processes such as the electroweak phase transition and quark-gluon plasma. The extension of quantum field theory to non-zero temperature is achieved by modifying the propagators in loop integrations represented by Feynman diagrams. The Python-language-based package pySecDec is designed for numerical calculation of dimensionally regulated loop integrals. The research goal for my thesis is to develop a methodology to numerically calculate loop integrations for finite temperature effects in quantum field theory by adapting pySecDec functions and implementing them for such purpose. In this thesis, the methodology is used on one-loop self-energy to achieve numerical calculation results. The pySecDec methodology is validated in comparison to existing analytic results for this topology.
dc.format.mimetypeapplication/pdf
dc.identifier.urihttps://hdl.handle.net/10388/13750
dc.subjectquantum field theory
dc.subjectthermal field theory
dc.subjectfinite temperature
dc.subjectnumerical calculation
dc.subjectFeynman integral
dc.subjectMatsubara formalism
dc.titleNumerical Methods for Finite Temperature Effects in Quantum Field Theory
dc.typeThesis
dc.type.materialtext
thesis.degree.departmentPhysics and Engineering Physics
thesis.degree.disciplinePhysics
thesis.degree.grantorUniversity of Saskatchewan
thesis.degree.levelMasters
thesis.degree.nameMaster of Science (M.Sc.)

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