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author Aarts, Gert
Aichelin, Joerg
Allton, Chris
Athenodorou, Andreas
Bachtis, Dimitrios
Bonanno, Claudio
Brambilla, Nora
Bratkovskaya, Elena
Bruno, Mattia
Caselle, Michele
Conti, Costanza
Contino, Roberto
Cosmai, Leonardo
Cuteri, Francesca
Del Debbio, Luigi
D'Elia, Massimo
Dimopoulos, Petros
Di Renzo, Francesco
Galatyuk, Tetyana
Guenther, Jana N.
Houtz, Rachel
Karsch, Frithjof
Kotov, Andrey Yu.
Lombardo, Maria Paola
Lucini, Biagio
Maio, Lorenzo
Panero, Marco
Pawlowski, Jan M.
Pelissetto, Andrea
Philipsen, Owe
Rago, Antonio
Ratti, Claudia
Ryan, Sinéad M.
Sannino, Francesco
Sasaki, Chihiro
Schicho, Philipp
Schmidt, Christian
Sharma, Sipaz
Soloveva, Olga
Sorba, Marianna
Wiese, Uwe-Jens
author_facet Aarts, Gert
Aichelin, Joerg
Allton, Chris
Athenodorou, Andreas
Bachtis, Dimitrios
Bonanno, Claudio
Brambilla, Nora
Bratkovskaya, Elena
Bruno, Mattia
Caselle, Michele
Conti, Costanza
Contino, Roberto
Cosmai, Leonardo
Cuteri, Francesca
Del Debbio, Luigi
D'Elia, Massimo
Dimopoulos, Petros
Di Renzo, Francesco
Galatyuk, Tetyana
Guenther, Jana N.
Houtz, Rachel
Karsch, Frithjof
Kotov, Andrey Yu.
Lombardo, Maria Paola
Lucini, Biagio
Maio, Lorenzo
Panero, Marco
Pawlowski, Jan M.
Pelissetto, Andrea
Philipsen, Owe
Rago, Antonio
Ratti, Claudia
Ryan, Sinéad M.
Sannino, Francesco
Sasaki, Chihiro
Schicho, Philipp
Schmidt, Christian
Sharma, Sipaz
Soloveva, Olga
Sorba, Marianna
Wiese, Uwe-Jens
author_sort Aarts, Gert
collection CERN
description Phase transitions in a non-perturbative regime can be studied by ab initio Lattice Field Theory methods. The status and future research directions for LFT investigations of Quantum Chromo-Dynamics under extreme conditions are reviewed, including properties of hadrons and of the hypothesized QCD axion as inferred from QCD topology in different phases. We discuss phase transitions in strong interactions in an extended parameter space, and the possibility of model building for Dark Matter and Electro-Weak Symmetry Breaking. Methodological challenges are addressed as well, including new developments in Artificial Intelligence geared towards the identification of different phases and transitions.
id cern-2847679
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2023
record_format invenio
spelling cern-28476792023-10-12T05:37:30Zdoi:10.1016/j.ppnp.2023.104070http://cds.cern.ch/record/2847679engAarts, GertAichelin, JoergAllton, ChrisAthenodorou, AndreasBachtis, DimitriosBonanno, ClaudioBrambilla, NoraBratkovskaya, ElenaBruno, MattiaCaselle, MicheleConti, CostanzaContino, RobertoCosmai, LeonardoCuteri, FrancescaDel Debbio, LuigiD'Elia, MassimoDimopoulos, PetrosDi Renzo, FrancescoGalatyuk, TetyanaGuenther, Jana N.Houtz, RachelKarsch, FrithjofKotov, Andrey Yu.Lombardo, Maria PaolaLucini, BiagioMaio, LorenzoPanero, MarcoPawlowski, Jan M.Pelissetto, AndreaPhilipsen, OweRago, AntonioRatti, ClaudiaRyan, Sinéad M.Sannino, FrancescoSasaki, ChihiroSchicho, PhilippSchmidt, ChristianSharma, SipazSoloveva, OlgaSorba, MariannaWiese, Uwe-JensPhase Transitions in Particle Physics - Results and Perspectives from Lattice Quantum Chromo-Dynamicsnucl-thNuclear Physics - Theoryhep-thParticle Physics - Theoryhep-phParticle Physics - Phenomenologyhep-latParticle Physics - LatticePhase transitions in a non-perturbative regime can be studied by ab initio Lattice Field Theory methods. The status and future research directions for LFT investigations of Quantum Chromo-Dynamics under extreme conditions are reviewed, including properties of hadrons and of the hypothesized QCD axion as inferred from QCD topology in different phases. We discuss phase transitions in strong interactions in an extended parameter space, and the possibility of model building for Dark Matter and Electro-Weak Symmetry Breaking. Methodological challenges are addressed as well, including new developments in Artificial Intelligence geared towards the identification of different phases and transitions.Phase transitions in a non-perturbative regime can be studied by ab initio Lattice Field Theory methods. The status and future research directions for LFT investigations of Quantum Chromo-Dynamics under extreme conditions are reviewed, including properties of hadrons and of the hypothesized QCD axion as inferred from QCD topology in different phases. We discuss phase transitions in strong interactions in an extended parameter space, and the possibility of model building for Dark Matter and Electro-Weak Symmetry Breaking. Methodological challenges are addressed as well, including new developments in Artificial Intelligence geared towards the identification of different phases and transitions.arXiv:2301.04382oai:cds.cern.ch:28476792023-01-11
spellingShingle nucl-th
Nuclear Physics - Theory
hep-th
Particle Physics - Theory
hep-ph
Particle Physics - Phenomenology
hep-lat
Particle Physics - Lattice
Aarts, Gert
Aichelin, Joerg
Allton, Chris
Athenodorou, Andreas
Bachtis, Dimitrios
Bonanno, Claudio
Brambilla, Nora
Bratkovskaya, Elena
Bruno, Mattia
Caselle, Michele
Conti, Costanza
Contino, Roberto
Cosmai, Leonardo
Cuteri, Francesca
Del Debbio, Luigi
D'Elia, Massimo
Dimopoulos, Petros
Di Renzo, Francesco
Galatyuk, Tetyana
Guenther, Jana N.
Houtz, Rachel
Karsch, Frithjof
Kotov, Andrey Yu.
Lombardo, Maria Paola
Lucini, Biagio
Maio, Lorenzo
Panero, Marco
Pawlowski, Jan M.
Pelissetto, Andrea
Philipsen, Owe
Rago, Antonio
Ratti, Claudia
Ryan, Sinéad M.
Sannino, Francesco
Sasaki, Chihiro
Schicho, Philipp
Schmidt, Christian
Sharma, Sipaz
Soloveva, Olga
Sorba, Marianna
Wiese, Uwe-Jens
Phase Transitions in Particle Physics - Results and Perspectives from Lattice Quantum Chromo-Dynamics
title Phase Transitions in Particle Physics - Results and Perspectives from Lattice Quantum Chromo-Dynamics
title_full Phase Transitions in Particle Physics - Results and Perspectives from Lattice Quantum Chromo-Dynamics
title_fullStr Phase Transitions in Particle Physics - Results and Perspectives from Lattice Quantum Chromo-Dynamics
title_full_unstemmed Phase Transitions in Particle Physics - Results and Perspectives from Lattice Quantum Chromo-Dynamics
title_short Phase Transitions in Particle Physics - Results and Perspectives from Lattice Quantum Chromo-Dynamics
title_sort phase transitions in particle physics - results and perspectives from lattice quantum chromo-dynamics
topic nucl-th
Nuclear Physics - Theory
hep-th
Particle Physics - Theory
hep-ph
Particle Physics - Phenomenology
hep-lat
Particle Physics - Lattice
url https://dx.doi.org/10.1016/j.ppnp.2023.104070
http://cds.cern.ch/record/2847679
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