On electric fields in hot QCD: perturbation theory

Endrödi G, Marko G (2022)
Journal of High Energy Physics (12): 15.

Zeitschriftenaufsatz | Veröffentlicht | Englisch
 
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Abstract / Bemerkung
We investigate the response of a hot gas of quarks to external electric fields via leading-order perturbation theory. In particular, we discuss how equilibrium is maintained in the presence of the electric field and calculate the electric susceptibility, providing its high-temperature expansion for arbitrary quark mass. Furthermore, we point out that there is a mismatch between this, direct determination of the susceptibility at zero field and the weak-field expansion of the effective action at nonzero electric fields, as obtained using Schwinger’s exact propagator. We discuss the origin of this mismatch and elaborate on the generalization of our results to full QCD in electric fields.
Erscheinungsjahr
2022
Zeitschriftentitel
Journal of High Energy Physics
Ausgabe
12
Art.-Nr.
15
eISSN
1029-8479
Page URI
https://pub.uni-bielefeld.de/record/2966873

Zitieren

Endrödi G, Marko G. On electric fields in hot QCD: perturbation theory. Journal of High Energy Physics. 2022;(12): 15.
Endrödi, G., & Marko, G. (2022). On electric fields in hot QCD: perturbation theory. Journal of High Energy Physics(12), 15. https://doi.org/10.1007/JHEP12(2022)015
Endrödi, Gergely, and Marko, Gergely. 2022. “On electric fields in hot QCD: perturbation theory”. Journal of High Energy Physics, no. 12: 15.
Endrödi, G., and Marko, G. (2022). On electric fields in hot QCD: perturbation theory. Journal of High Energy Physics:15.
Endrödi, G., & Marko, G., 2022. On electric fields in hot QCD: perturbation theory. Journal of High Energy Physics, (12): 15.
G. Endrödi and G. Marko, “On electric fields in hot QCD: perturbation theory”, Journal of High Energy Physics, 2022, : 15.
Endrödi, G., Marko, G.: On electric fields in hot QCD: perturbation theory. Journal of High Energy Physics. : 15 (2022).
Endrödi, Gergely, and Marko, Gergely. “On electric fields in hot QCD: perturbation theory”. Journal of High Energy Physics 12 (2022): 15.
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arXiv: 2208.14306

Inspire: 2143673

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