D'Alise, Alessandra (2024) Non-perturbative results for Quantum Chromodynamics: from charged sectors to near conformal dynamics. [Tesi di dottorato]

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Tipologia del documento: Tesi di dottorato
Lingua: English
Titolo: Non-perturbative results for Quantum Chromodynamics: from charged sectors to near conformal dynamics
Autori:
Autore
Email
D'Alise, Alessandra
alessandra.dalise@unina.it
Data: 8 Dicembre 2024
Numero di pagine: 307
Istituzione: Università degli Studi di Napoli Federico II
Dipartimento: Fisica
Dottorato: Fisica
Ciclo di dottorato: 37
Coordinatore del Corso di dottorato:
nome
email
Canale, Vincenzo
canale@na.infn.it
Tutor:
nome
email
Sannino, Francesco
[non definito]
Data: 8 Dicembre 2024
Numero di pagine: 307
Parole chiave: CFT, QCD, QCD at Finite Density, Chiral Lagrangian, Phase Diagram, Phase Transitions, Large Charge, Dilaton Dynamics, Spontaneous Symmetry Breaking,Topological sectors, Skyrme Model,Soliton Dynamics
Settori scientifico-disciplinari del MIUR: Area 02 - Scienze fisiche > FIS/02 - Fisica teorica, modelli e metodi matematici
Informazioni aggiuntive: L'autore appartiene al Ciclo di dottorato 37.
Depositato il: 18 Ott 2025 15:23
Ultima modifica: 02 Set 2026 08:07
URI: https://www.fedoa.unina.it/id/eprint/16354

Abstract

This thesis delves into the near conformal dynamics of Quantum Chromodynamics (QCD) and QCD-like theories, with a particular focus on the role of large charge sectors, solitonic objects, and the dilaton in the context of conformal and near conformal phases. It emphasises the importance of exploring near conformal field theories due to the deep connections between conformal symmetry, quantum phase transitions, and non-perturbative effects in strongly interacting systems. These topics are intricately tied to QCD and its extensions, where both theoretical challenges and phenomenological implications are at stake. The work not only contributes to the understanding of fundamental quantum phase transitions but also has profound implications for the study of nuclear matter in extreme environments. Through its multifaceted approach, this research pushes the boundaries of theoretical and phenomenological investigations in strongly coupled systems.

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