Physics case for low-$\sqrt{s}$ QCD studies at FCC-ee
Abstract
Measurements of hadronic final states in collisions at centre-of-mass (CM) energies below the Z peak can notably extend the FCC-ee physics reach in terms of precision quantum chromodynamics (QCD) studies. Hadronic final states can be studied over a range of hadronic energies by exploiting events with hard initial- and final-state QED radiation (ISR/FSR) during the high-luminosity Z-pole run, as well as in dedicated short (about one month long) runs at CM energies and . Using realistic estimates and fast detector simulations, we show that data samples of about hadronic events can be collected at the FCC-ee at each of the low-CM-energy points. Such datasets can be exploited in a variety of precision QCD measurements, including studies of light-, heavy-quark and gluon jet properties, hadronic event shapes, fragmentation functions, and nonperturbative dynamics. This will offer valuable insights into strong interaction physics, complementing data from nominal FCC-ee runs at higher center-of-mass energies, and .
Cite
@article{arxiv.2503.23855,
title = {Physics case for low-$\sqrt{s}$ QCD studies at FCC-ee},
author = {David d'Enterria and Pier Francesco Monni and Peter Skands and Andrii Verbytskyi},
journal= {arXiv preprint arXiv:2503.23855},
year = {2026}
}
Comments
Contribution to the European Strategy for Particle Physics Update 2025