Space-time structure of 3+1D color fields in high energy nuclear collisions

Ipp A, Müller DI, Schlichting S, Singh P (2021)
arXiv:2109.05028.

Preprint | Englisch
 
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Autor*in
Ipp, Andreas; Müller, David I.; Schlichting, SörenUniBi ; Singh, PragyaUniBi
Abstract / Bemerkung
We perform an analytic calculation of the color fields in heavy-ion collisions by considering the collision of longitudinally extended nuclei in the dilute limit of the Color Glass Condensate effective field theory of high-energy QCD. Based on general analytic expressions for the color fields in the future light cone, we evaluate the rapidity profile of the transverse pressure within a simple specific model of the nuclear collision geometry and compare our results to 3+1D classical Yang-Mills simulations.
Erscheinungsjahr
2021
Zeitschriftentitel
arXiv:2109.05028
Page URI
https://pub.uni-bielefeld.de/record/2958518

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Ipp A, Müller DI, Schlichting S, Singh P. Space-time structure of 3+1D color fields in high energy nuclear collisions. arXiv:2109.05028. 2021.
Ipp, A., Müller, D. I., Schlichting, S., & Singh, P. (2021). Space-time structure of 3+1D color fields in high energy nuclear collisions. arXiv:2109.05028
Ipp, A., Müller, D. I., Schlichting, S., and Singh, P. (2021). Space-time structure of 3+1D color fields in high energy nuclear collisions. arXiv:2109.05028.
Ipp, A., et al., 2021. Space-time structure of 3+1D color fields in high energy nuclear collisions. arXiv:2109.05028.
A. Ipp, et al., “Space-time structure of 3+1D color fields in high energy nuclear collisions”, arXiv:2109.05028, 2021.
Ipp, A., Müller, D.I., Schlichting, S., Singh, P.: Space-time structure of 3+1D color fields in high energy nuclear collisions. arXiv:2109.05028. (2021).
Ipp, Andreas, Müller, David I., Schlichting, Sören, and Singh, Pragya. “Space-time structure of 3+1D color fields in high energy nuclear collisions”. arXiv:2109.05028 (2021).

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arXiv: 2109.05028

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