arXiv:2405.14773·v3·High Energy Physics — Phenomenology
Fully charmed tetraquarks from LHC to FCC: Natural stability from fragmentation
Francesco Giovanni Celiberto🇪🇸 · Gabriele Gatto🇮🇹 · Alessandro papa🇮🇹
Abstract
We investigate the inclusive production of fully charmed tetraquarks, or radial excitations, in high-energy proton collisions. We build our study upon the collinear fragmentation of a single parton in a variable-flavor number scheme, suited to describe the tetraquark formation mechanism from moderate to large transverse-momentum regimes. To this extent, we derive a novel set of DGLAP-evolving collinear fragmentation functions, named TQ4Q1.0 determinations. They encode initial-scale inputs corresponding to both gluon and heavy-quark fragmentation channels, defined within the context of quark-potential and spin-physics inspired models, respectively. We work within the NLL/NLO hybrid factorization and make use of the JETHAD numeric interface along with the symJETHAD symbolic calculation plugin. With these tools, we provide predictions for high-energy observables sensitive to plus jet emissions at center-of-mass energies ranging from 14 TeV at the LHC to the 100 TeV nominal energy of the FCC.
Comments: 56 pages, 13 figures, version published in EPJC. Four novel sets of "TetraQuarks with 4 heavy Quarks" (TQ4Q1.0) NLO collinear fragmentation functions released in LHAPDF format and publicly available from https://github.com/FGCeliberto/Collinear_FFs/