A technique for natural gauge boson masses

dc.contributor.advisorKoch, Benjamin
dc.contributor.authorLaporte, Cristóbal
dc.contributor.otherPontificia Universidad Católica de Chile. Instituto de Física
dc.date2020-07-31
dc.date.accessioned2020-07-31T13:28:33Z
dc.date.issued2020
dc.date.updated2020-07-29T22:46:43Z
dc.descriptionTesis (Master's in Physics)--Pontificia Universidad Católica de Chile, 2020
dc.description.abstractIn this work, a novel mechanism for spontaneous symmetry breaking is presented. This mechanism allows to avoid quadratic divergencies and is thus capable of addressing the hierarchy problem in gauge theories. Using the scale-dependent effective action Γk minimally coupled to a gravitational sector, variational parameter setting provides a mass and vacuum expectation value as a function of the constants arising in the low scale expansion of Newtons’ and cosmological couplings. A comparison with experimental data, such as the Higgs mass, allows putting restrictions on these constants. This generic approach allows comparing with explicit candidates for an effective field theory of gravity. As an example, we use the asymptotic safety scenario, where we find restrictions on the matter content of the theory.In this work, a novel mechanism for spontaneous symmetry breaking is presented. This mechanism allows to avoid quadratic divergencies and is thus capable of addressing the hierarchy problem in gauge theories. Using the scale-dependent effective action Γk minimally coupled to a gravitational sector, variational parameter setting provides a mass and vacuum expectation value as a function of the constants arising in the low scale expansion of Newtons’ and cosmological couplings. A comparison with experimental data, such as the Higgs mass, allows putting restrictions on these constants. This generic approach allows comparing with explicit candidates for an effective field theory of gravity. As an example, we use the asymptotic safety scenario, where we find restrictions on the matter content of the theory.In this work, a novel mechanism for spontaneous symmetry breaking is presented. This mechanism allows to avoid quadratic divergencies and is thus capable of addressing the hierarchy problem in gauge theories. Using the scale-dependent effective action Γk minimally coupled to a gravitational sector, variational parameter setting provides a mass and vacuum expectation value as a function of the constants arising in the low scale expansion of Newtons’ and cosmological couplings. A comparison with experimental data, such as the Higgs mass, allows putting restrictions on these constants. This generic approach allows comparing with explicit candidates for an effective field theory of gravity. As an example, we use the asymptotic safety scenario, where we find restrictions on the matter content of the theory.In this work, a novel mechanism for spontaneous symmetry breaking is presented. This mechanism allows to avoid quadratic divergencies and is thus capable of addressing the hierarchy problem in gauge theories. Using the scale-dependent effective action Γk minimally coupled to a gravitational sector, variational parameter setting provides a mass and vacuum expectation value as a function of the constants arising in the low scale expansion of Newtons’ and cosmological couplings. A comparison with experimental data, such as the Higgs mass, allows putting restrictions on these constants. This generic approach allows comparing with explicit candidates for an effective field theory of gravity. As an example, we use the asymptotic safety scenario, where we find restrictions on the matter content of the theory.
dc.description.version2020-07-31
dc.format.extent74 páginas
dc.identifier.doi10.7764/tesisUC/FIS/37857
dc.identifier.urihttps://doi.org/10.7764/tesisUC/FIS/37857
dc.identifier.urihttps://repositorio.uc.cl/handle/11534/37857
dc.language.isoen
dc.nota.accesoContenido completo
dc.rightsacceso abierto
dc.subject.ddc539.721
dc.subject.deweyMatemática física y químicaes_ES
dc.subject.otherBosones de Higgses_ES
dc.subject.otherCampos de calibre (Física)es_ES
dc.subject.otherGravedades_ES
dc.titleA technique for natural gauge boson masseses_ES
dc.typetesis de maestría
sipa.codpersvinculados1006903
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