Chiral deformations of Yang-Mills and Gravity theories

In this thesis we present a modification of Yang-Mills and Gravity theories both written in terms of gauge connections. In particular gravity is presented in its pure connection formulation realizing a Diffeomorphism Invariant Gauge Theory. The modifications do not change the kinematical content of...

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Main Author: Cofano, M.C.
Format: Thesis (University of Nottingham only)
Language:English
Published: 2018
Subjects:
Online Access:https://eprints.nottingham.ac.uk/50369/
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author Cofano, M.C.
author_facet Cofano, M.C.
author_sort Cofano, M.C.
building Nottingham Research Data Repository
collection Online Access
description In this thesis we present a modification of Yang-Mills and Gravity theories both written in terms of gauge connections. In particular gravity is presented in its pure connection formulation realizing a Diffeomorphism Invariant Gauge Theory. The modifications do not change the kinematical content of the theories, but they add an infinite set of new vertices retaining the symmetries of the original Lagrangians without introducing higher derivatives in the equations of motion. These new interactions are chiral, leaving the original Yang Mills and Gravity theories as the only parity-invariant theories in the set. In the Yang-Mills case we proved that at tree level the theory is still constructible via the so-called BCFW recursion relations. Both theories are claimed to be closed under the renormalization group. The Yang-Mills Deformations are indeed proved to be one-loop renormalizable and an explicit diagrammatic computation of the simplest deformation beta-function is given. For gravity a new formulation is introduced that could lead to a similar result at one-loop.
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spelling nottingham-503692025-02-28T14:02:19Z https://eprints.nottingham.ac.uk/50369/ Chiral deformations of Yang-Mills and Gravity theories Cofano, M.C. In this thesis we present a modification of Yang-Mills and Gravity theories both written in terms of gauge connections. In particular gravity is presented in its pure connection formulation realizing a Diffeomorphism Invariant Gauge Theory. The modifications do not change the kinematical content of the theories, but they add an infinite set of new vertices retaining the symmetries of the original Lagrangians without introducing higher derivatives in the equations of motion. These new interactions are chiral, leaving the original Yang Mills and Gravity theories as the only parity-invariant theories in the set. In the Yang-Mills case we proved that at tree level the theory is still constructible via the so-called BCFW recursion relations. Both theories are claimed to be closed under the renormalization group. The Yang-Mills Deformations are indeed proved to be one-loop renormalizable and an explicit diagrammatic computation of the simplest deformation beta-function is given. For gravity a new formulation is introduced that could lead to a similar result at one-loop. 2018-07-19 Thesis (University of Nottingham only) NonPeerReviewed application/pdf en arr https://eprints.nottingham.ac.uk/50369/1/mc-thesis.pdf Cofano, M.C. (2018) Chiral deformations of Yang-Mills and Gravity theories. PhD thesis, University of Nottingham. Quantum Field Theory gravity.
spellingShingle Quantum Field Theory
gravity.
Cofano, M.C.
Chiral deformations of Yang-Mills and Gravity theories
title Chiral deformations of Yang-Mills and Gravity theories
title_full Chiral deformations of Yang-Mills and Gravity theories
title_fullStr Chiral deformations of Yang-Mills and Gravity theories
title_full_unstemmed Chiral deformations of Yang-Mills and Gravity theories
title_short Chiral deformations of Yang-Mills and Gravity theories
title_sort chiral deformations of yang-mills and gravity theories
topic Quantum Field Theory
gravity.
url https://eprints.nottingham.ac.uk/50369/