Please use this identifier to cite or link to this item: https://hdl.handle.net/10316/110729
DC FieldValueLanguage
dc.contributor.advisorOliveira, Orlando Olavo Aragão Aleixo e Neves de-
dc.contributor.advisorSilva, Paulo de Jesus Henriques da-
dc.contributor.authorColaço, Manuel Francisco Silvério Carrilho-
dc.date.accessioned2023-11-23T23:09:26Z-
dc.date.available2023-11-23T23:09:26Z-
dc.date.issued2023-09-27-
dc.date.submitted2023-11-23-
dc.identifier.urihttps://hdl.handle.net/10316/110729-
dc.descriptionDissertação de Mestrado em Física apresentada à Faculdade de Ciências e Tecnologia-
dc.description.abstractThe interaction vertices of the gluon sector of Quantum Chromodynamics are of fundamental importance in hadronic physics. To evaluate these vertices in the low-energy scale, non-perturbative methods are required. Due to the convoluted tensor structure of this four gluon vertex, non-perturbative methods face the challenge of extracting reliable non-perturbative data on this vertex. As such, it is poorly understood in the low-energy scale of Quantum Chromodynamics.Lattice Quantum Chromodynamics provide access to this non-perturbative regime.In this dissertation, the four gluon vertex is constructed from first, and a specific set of kinematic configurations is chosen such that it allows for a piratical evaluation of this vertex with the formalism Quenched Lattice Quantum Chromodynamics, i.e. quark dynamics are not considered.The interaction vertices of the gluon sector of Quantum Chromodynamics are of fundamental importance in hadronic physics. To evaluate these vertices in the low-energy scale, non-perturbative methods are required. Due to the convoluted tensor structure of this four gluon vertex, non-perturbative methods face the challenge of extracting reliable non-perturbative data on this vertex. As such, it is poorly understood in the low-energy scale of Quantum Chromodynamics.Lattice Quantum Chromodynamics provide access to this non-perturbative regime.In this dissertation, the four gluon vertex is constructed from first, and a specific set of kinematic configurations is chosen such that it allows for a piratical evaluation of this vertex with the formalism Quenched Lattice Quantum Chromodynamics, i.e. quark dynamics are not considered.eng
dc.description.abstractThe interaction vertices of the gluon sector of Quantum Chromodynamics are of fundamental importance in hadronic physics. To evaluate these vertices in the low-energy scale, non-perturbative methods are required. Due to the convoluted tensor structure of this four gluon vertex, non-perturbative methods face the challenge of extracting reliable non-perturbative data on this vertex. As such, it is poorly understood in the low-energy scale of Quantum Chromodynamics.Lattice Quantum Chromodynamics provide access to this non-perturbative regime.In this dissertation, the four gluon vertex is constructed from first, and a specific set of kinematic configurations is chosen such that it allows for a piratical evaluation of this vertex with the formalism Quenched Lattice Quantum Chromodynamics, i.e. quark dynamics are not considered.The interaction vertices of the gluon sector of Quantum Chromodynamics are of fundamental importance in hadronic physics. To evaluate these vertices in the low-energy scale, non-perturbative methods are required. Due to the convoluted tensor structure of this four gluon vertex, non-perturbative methods face the challenge of extracting reliable non-perturbative data on this vertex. As such, it is poorly understood in the low-energy scale of Quantum Chromodynamics.Lattice Quantum Chromodynamics provide access to this non-perturbative regime.In this dissertation, the four gluon vertex is constructed from first, and a specific set of kinematic configurations is chosen such that it allows for a piratical evaluation of this vertex with the formalism Quenched Lattice Quantum Chromodynamics, i.e. quark dynamics are not considered.por
dc.language.isoeng-
dc.rightsopenAccess-
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/-
dc.subjectLattice Quantum Chromodynamicseng
dc.subjectNon-perturbative Chromodynamicseng
dc.subjectFour gluon vertexeng
dc.subjectQuantum Chromodynamicseng
dc.subjectFour gluon Correlation Functioneng
dc.subjectLattice Quantum Chromodynamicspor
dc.subjectNon-perturbative Chromodynamicspor
dc.subjectFour gluon vertexpor
dc.subjectQuantum Chromodynamicspor
dc.subjectFour gluon Correlation Functionpor
dc.titleThe Four Gluon Vertex from Lattice Quantum Chromodynamicseng
dc.title.alternativeO vértice de 4 gluões vindo da Cromodinâmica Quântica na redepor
dc.typemasterThesis-
degois.publication.locationDF-
degois.publication.titleThe Four Gluon Vertex from Lattice Quantum Chromodynamicseng
dc.peerreviewedyes-
dc.identifier.tid203400011-
thesis.degree.disciplineFísica-
thesis.degree.grantorUniversidade de Coimbra-
thesis.degree.level1-
thesis.degree.nameMestrado em Física-
uc.degree.grantorUnitFaculdade de Ciências e Tecnologia - Departamento de Física-
uc.degree.grantorID0500-
uc.contributor.authorColaço, Manuel Francisco Silvério Carrilho::0009-0003-7040-4043-
uc.degree.classification16-
uc.degree.presidentejuriSagun, Violetta-
uc.degree.elementojuriBorrero, Feliciano Carlos de Soto-
uc.degree.elementojuriOliveira, Orlando Olavo Aragão Aleixo e Neves de-
uc.contributor.advisorOliveira, Orlando Olavo Aragão Aleixo e Neves de-
uc.contributor.advisorSilva, Paulo de Jesus Henriques da::0000-0002-3658-2319-
item.grantfulltextopen-
item.cerifentitytypePublications-
item.languageiso639-1en-
item.openairetypemasterThesis-
item.openairecristypehttp://purl.org/coar/resource_type/c_18cf-
item.fulltextCom Texto completo-
Appears in Collections:UC - Dissertações de Mestrado
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