Roberge-Weiss transitions at imaginary isospin chemical potential

Chabane A, Endrödi G (2021)
arXiv:2110.13536.

Preprint | Englisch
 
Download
Es wurden keine Dateien hochgeladen. Nur Publikationsnachweis!
Autor*in
Chabane, Amine; Endrödi, GergelyUniBi
Abstract / Bemerkung
At finite imaginary values of the chemical potential, QCD is free of the sign problem. Moreover, at high temperatures the partition function exhibits a new symmetry (the Roberge-Weiss symmetry) connecting phases with different orientations of the Polyakov loop, and the corresponding phase transitions between these. In this contribution we investigate the perturbative one-loop effective potential for the Polyakov loop in the presence of imaginary isospin as well as baryon chemical potentials. This leads to a novel phase diagram, which reveals an interesting insight about the rich phase structure of the system and the center symmetry breaking. We check the perturbative results using direct lattice simulations.
Erscheinungsjahr
2021
Zeitschriftentitel
arXiv:2110.13536
Page URI
https://pub.uni-bielefeld.de/record/2961962

Zitieren

Chabane A, Endrödi G. Roberge-Weiss transitions at imaginary isospin chemical potential. arXiv:2110.13536. 2021.
Chabane, A., & Endrödi, G. (2021). Roberge-Weiss transitions at imaginary isospin chemical potential. arXiv:2110.13536
Chabane, Amine, and Endrödi, Gergely. 2021. “Roberge-Weiss transitions at imaginary isospin chemical potential”. arXiv:2110.13536.
Chabane, A., and Endrödi, G. (2021). Roberge-Weiss transitions at imaginary isospin chemical potential. arXiv:2110.13536.
Chabane, A., & Endrödi, G., 2021. Roberge-Weiss transitions at imaginary isospin chemical potential. arXiv:2110.13536.
A. Chabane and G. Endrödi, “Roberge-Weiss transitions at imaginary isospin chemical potential”, arXiv:2110.13536, 2021.
Chabane, A., Endrödi, G.: Roberge-Weiss transitions at imaginary isospin chemical potential. arXiv:2110.13536. (2021).
Chabane, Amine, and Endrödi, Gergely. “Roberge-Weiss transitions at imaginary isospin chemical potential”. arXiv:2110.13536 (2021).
Export

Markieren/ Markierung löschen
Markierte Publikationen

Open Data PUB

Quellen

arXiv: 2110.13536

Inspire: 1952177

Suchen in

Google Scholar