Heavy-flavor multimodal fragmentation to $S$-wave pentacharms at next-generation hadron colliders
Abstract
We investigate the leading-power fragmentation of fully charmed pentaquark states (-wave pentacharms) at hadron colliders. We introduce a new set of multimodal collinear fragmentation functions, named PQ5Q1.0. They rely on an enhanced calculation of the initial-scale input for the constituent heavy-quark fragmentation channel, making them well suited to describe the short-distance emission of either a compact multicharm state or a dicharm-charm-dicharm configuration. To explore phenomenological implications, we use the (sym)JETHAD multimodular interface to study NLL/NLO semi-inclusive production rates for pentacharm-plus-jet systems at the forthcoming HL-LHC and the future FCC. Our analysis represents a further step toward bridging the domains of hadronic structure, precision QCD, and exotic matter.
Keywords
Cite
@article{arxiv.2502.11136,
title = {Heavy-flavor multimodal fragmentation to $S$-wave pentacharms at next-generation hadron colliders},
author = {Francesco Giovanni Celiberto},
journal= {arXiv preprint arXiv:2502.11136},
year = {2025}
}
Comments
49 pages, 9 figures, 245 references, published in Eur. Phys. J. C. One novel set of multimodal (direct multicharm and diquark-like initial-scale inputs) "PentaQuarks with 5 heavy Quarks" (PQ5Q1.0) NLO collinear fragmentation functions released in LHAPDF format and publicly available from https://github.com/FGCeliberto/Collinear_FFs/