Phase Transitions in Particle Physics
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BORIS DOI
Date of Publication
November 2023
Publication Type
Article
Division/Institute
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 |
Subject(s)
Series
Progress in particle and nuclear physics
ISSN or ISBN (if monograph)
0146-6410
Publisher
Elsevier
Language
English
Publisher DOI
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.
File(s)
File | File Type | Format | Size | License | Publisher/Copright statement | Content | |
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Wiese1.pdf | text | Adobe PDF | 1.92 MB | publisher | published |