English

Matching and event-shape NNDL accuracy in parton showers

High Energy Physics - Phenomenology 2023-10-25 v3

Abstract

To explore the interplay of NLO matching and next-to-leading logarithmic (NLL) parton showers, we consider the simplest case of γ\gamma^* and Higgs-boson decays to qqˉq\bar q and gggg respectively. Not only should shower NLL accuracy be retained across observables after matching, but for global event-shape observables and the two-jet rate, matching can augment the shower in such a way that it additionally achieves next-to-next-to-double-logarithmic (NNDL) accuracy, a first step on the route towards general NNLL. As a proof-of-concept exploration of this question, we consider direct application of multiplicative matrix-element corrections, as well as simple implementations of MC@NLO and POWHEG-style matching. We find that the first two straightforwardly bring NNDL accuracy, and that this can also be achieved with POWHEG, although particular care is needed in the handover between POWHEG and the shower. Our study involves both analytic and numerical components and we also touch on some phenomenological considerations.

Keywords

Cite

@article{arxiv.2301.09645,
  title  = {Matching and event-shape NNDL accuracy in parton showers},
  author = {Keith Hamilton and Alexander Karlberg and Gavin P. Salam and Ludovic Scyboz and Rob Verheyen},
  journal= {arXiv preprint arXiv:2301.09645},
  year   = {2023}
}

Comments

42 pages, 14 figures; v2: matches published version; v3: corrected typos in eqs. 1.1, 4.1, A.4, no other content affected