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Holography and Dualities in Quantum Field Theories / RICARDO STUARDO

Swansea University Author: RICARDO STUARDO

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DOI (Published version): 10.23889/SUThesis.68766

Abstract

The strong coupling regime of Quantum Field theories is studied by using two different frameworks in String Theory. First, by using brane configurations and studying its dynamics, we propose an electric-magnetic duality for three dimensional Yang-Mills Chern-Simons with and without SUSY. By analisin...

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Published: Swansea University, Wales, UK 2024
Institution: Swansea University
Degree level: Doctoral
Degree name: Ph.D
Supervisor: Armoni, A.
URI: https://cronfa.swan.ac.uk/Record/cronfa68766
first_indexed 2025-01-30T13:44:45Z
last_indexed 2025-01-30T20:25:50Z
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recordtype RisThesis
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spelling 2025-01-30T13:48:29.5816917 v2 68766 2025-01-30 Holography and Dualities in Quantum Field Theories 8140d210dc6ffb734d917b45bc5858fd RICARDO STUARDO RICARDO STUARDO true false 2025-01-30 The strong coupling regime of Quantum Field theories is studied by using two different frameworks in String Theory. First, by using brane configurations and studying its dynamics, we propose an electric-magnetic duality for three dimensional Yang-Mills Chern-Simons with and without SUSY. By analising the infrared structure we check the validity of this duality. Then, using the Gauge/Gravity correspondance, we study the strong coupling regime of SQFT in different dimensions, which may or not be conformal. We compute some observables and propose that the theories confine. E-Thesis Swansea University, Wales, UK String Theory, Holography, Dualities, Quantum Field Theories 21 11 2024 2024-11-21 10.23889/SUThesis.68766 COLLEGE NANME COLLEGE CODE Swansea University Armoni, A. Doctoral Ph.D STFC STFC 2025-01-30T13:48:29.5816917 2025-01-30T13:36:58.6479248 Faculty of Science and Engineering School of Biosciences, Geography and Physics - Physics RICARDO STUARDO 1 68766__33441__830ca2359b534cff95fcc5893d50424f.pdf 2024_Stuardo_R.final.68766.pdf 2025-01-30T13:43:57.4952058 Output 1893422 application/pdf E-Thesis – open access true Copyright: The Author, Ricardo Stuardo, 2024 Distributed under the terms of a Creative Commons Attribution 4.0 License (CC BY 4.0). true eng https://creativecommons.org/licenses/by/4.0/
title Holography and Dualities in Quantum Field Theories
spellingShingle Holography and Dualities in Quantum Field Theories
RICARDO STUARDO
title_short Holography and Dualities in Quantum Field Theories
title_full Holography and Dualities in Quantum Field Theories
title_fullStr Holography and Dualities in Quantum Field Theories
title_full_unstemmed Holography and Dualities in Quantum Field Theories
title_sort Holography and Dualities in Quantum Field Theories
author_id_str_mv 8140d210dc6ffb734d917b45bc5858fd
author_id_fullname_str_mv 8140d210dc6ffb734d917b45bc5858fd_***_RICARDO STUARDO
author RICARDO STUARDO
author2 RICARDO STUARDO
format E-Thesis
publishDate 2024
institution Swansea University
doi_str_mv 10.23889/SUThesis.68766
college_str Faculty of Science and Engineering
hierarchytype
hierarchy_top_id facultyofscienceandengineering
hierarchy_top_title Faculty of Science and Engineering
hierarchy_parent_id facultyofscienceandengineering
hierarchy_parent_title Faculty of Science and Engineering
department_str School of Biosciences, Geography and Physics - Physics{{{_:::_}}}Faculty of Science and Engineering{{{_:::_}}}School of Biosciences, Geography and Physics - Physics
document_store_str 1
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description The strong coupling regime of Quantum Field theories is studied by using two different frameworks in String Theory. First, by using brane configurations and studying its dynamics, we propose an electric-magnetic duality for three dimensional Yang-Mills Chern-Simons with and without SUSY. By analising the infrared structure we check the validity of this duality. Then, using the Gauge/Gravity correspondance, we study the strong coupling regime of SQFT in different dimensions, which may or not be conformal. We compute some observables and propose that the theories confine.
published_date 2024-11-21T12:18:59Z
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score 11.08895