English

Jet Quenching in the Smallest Hadronic Collision Systems

High Energy Physics - Phenomenology 2026-04-21 v1 Nuclear Theory

Abstract

We present perturbative quantum chromodynamics (pQCD) predictions for high-momentum particle yield modification in very light ion collisions - 10B+10B{}^{10}\mathrm{B}+{}^{10}\mathrm{B}, 6Li+6Li{}^{6}\mathrm{Li}+{}^{6}\mathrm{Li}, 4He+4He{}^{4}\mathrm{He}+{}^{4}\mathrm{He}, and 3He+3He{}^{3}\mathrm{He}+{}^{3}\mathrm{He} - with and without medium-induced energy loss. We find non-trivial suppression in symmetric systems from 208Pb+208Pb{}^{208}\mathrm{Pb}+{}^{208}\mathrm{Pb} to 3He+3He{}^{3}\mathrm{He}+{}^{3}\mathrm{He} and in asymmetric A+BA+B systems, with the suppression scaling approximately as RAB(AB)1/3R_{AB} \simeq (\sqrt{AB})^{1/3}. Further, we find that 3He{}^{3}\mathrm{He} and 6Li{}^{6}\mathrm{Li} offer particularly clean environments for observing final-state partonic energy loss from quark-gluon plasma (QGP) formation in extremely small systems. Finally, we show that energy loss models generically predict v2{SP}0v_2\{\mathrm{SP}\} \approx 0 in small systems, indicating that the large measured v2>0v_2 > 0 in p+208Pbp+{}^{208}\mathrm{Pb} is not due to energy loss.

Keywords

Cite

@article{arxiv.2604.18010,
  title  = {Jet Quenching in the Smallest Hadronic Collision Systems},
  author = {Coleridge Faraday and Ben Bert and Jack Brand and Werner Vogelsang and W. A. Horowitz},
  journal= {arXiv preprint arXiv:2604.18010},
  year   = {2026}
}

Comments

Contribution to the 2026 QCD session of the 60th Rencontres de Moriond

R2 v1 2026-07-01T12:17:58.147Z