English

The LPM Effect in sequential bremsstrahlung: $1/N_c^2$ corrections

High Energy Physics - Phenomenology 2023-03-02 v2 Nuclear Theory

Abstract

An important question concerning in-medium high-energy parton showers in a quark-gluon plasma or other QCD medium is whether consecutive splittings of the partons in a given shower can be treated as quantum mechanically independent, or whether the formation times for two consecutive splittings instead have significant overlap. Various previous calculations of the effect of overlapping formation times have either (i) restricted attention to a soft bremsstrahlung limit, or else (ii) used the large-NcN_c limit (where Nc=3N_c{=}3 is the number of quark colors). In this paper, we make a first study of the accuracy of the large-NcN_c limit used by those calculations of overlap effects that avoid a soft bremsstrahlung approximation. Specifically, we calculate the 1/Nc21/N_c^2 correction to previous Nc=N_c{=}\infty results for overlap ggggggg \to gg \to ggg of two consecutive gluon splittings gggg \to gg. At order 1/Nc21/N_c^2, there is interesting and non-trivial color dynamics that must be accounted for during the overlap of the formation times.

Keywords

Cite

@article{arxiv.2202.04662,
  title  = {The LPM Effect in sequential bremsstrahlung: $1/N_c^2$ corrections},
  author = {Peter Arnold and Omar Elgedawy},
  journal= {arXiv preprint arXiv:2202.04662},
  year   = {2023}
}

Comments

47 pages, 19 figures. Changes from v1: some clarification added through new footnotes and a new figure

R2 v1 2026-06-24T09:28:55.241Z