粒子物理中的相变——来自格点量子色动力学的成果与展望
高能物理 - 格点
2023-09-04 v2 高能物理 - 唯象学
高能物理 - 理论
核理论
摘要
非微扰区中的相变可通过第一性原理格点场论方法研究。本文综述了极端条件下量子色动力学(QCD)的格点场论(LFT)研究现状与未来方向,包括由不同相中的QCD拓扑推断的强子性质与假想的QCD轴子性质。我们讨论了扩展参数空间中强相互作用的相变,以及构建暗物质与电弱对称性破缺模型的可能性。同时也探讨了方法论挑战,包括面向不同相与相变识别的人工智能新发展。
引用
@article{arxiv.2301.04382,
title = {Phase Transitions in Particle Physics -- Results and Perspectives from Lattice Quantum Chromo-Dynamics},
author = {Gert Aarts and Joerg Aichelin and Chris Allton and Andreas Athenodorou and Dimitrios Bachtis and Claudio Bonanno and Nora Brambilla and Elena Bratkovskaya and Mattia Bruno and Michele Caselle and Costanza Conti and Roberto Contino and Leonardo Cosmai and Francesca Cuteri and Luigi Del Debbio and Massimo D'Elia and Petros Dimopoulos and Francesco Di Renzo and Tetyana Galatyuk and Jana N. Guenther and Rachel Houtz and Frithjof Karsch and Andrey Yu. Kotov and Maria Paola Lombardo and Biagio Lucini and Lorenzo Maio and Marco Panero and Jan M. Pawlowski and Andrea Pelissetto and Owe Philipsen and Antonio Rago and Claudia Ratti and Sinéad M. Ryan and Francesco Sannino and Chihiro Sasaki and Philipp Schicho and Christian Schmidt and Sipaz Sharma and Olga Soloveva and Marianna Sorba and Uwe-Jens Wiese},
journal= {arXiv preprint arXiv:2301.04382},
year = {2023}
}
备注
94 pages, 23 figures, GGI workshop "Phase Transitions in Particle Physics" review - v2: minor revisions and typo corrected, matches accepted version on PPNP