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hep-ph2026

Jet Quenching in the Smallest Hadronic Collision Systems

Coleridge Faraday, Ben Bert, Jack Brand +2

We present perturbative quantum chromodynamics (pQCD) predictions for high-momentum particle yield modification in very light ion collisions -

hep-ph2026

Energy loss predicts no in small systems

Ben Bert, Coleridge Faraday, W. A. Horowitz

We present high- and from a perturbative quantum chromodynamics-based energy loss model that includes event-by-event hydrodynamic evolution of the medium and sm…

hep-ph2025

From Lead to Helium: Discovery Potential for Jet Quenching in the Smallest Collision Systems

Coleridge Faraday, Ben Bert, Jack Brand +2

We present perturbative quantum chromodynamics (pQCD) predictions for the modification to the yield of high-momentum particles in very light ion collisions - ${}^{10}\mathrm{B} + {…

hep-ph20254 cited

Statistical analysis of pQCD energy loss across system size, flavor, , and

Coleridge Faraday, W. A. Horowitz

We present suppression predictions from our pQCD-based energy loss model, which receives small system size corrections, for high- , and meson as a function…

hep-ph2024

A unified description of small, peripheral, and large system suppression data from pQCD

Coleridge Faraday, W. A. Horowitz

We present quantitative predictions for the nuclear modification factor in both small and peripheral systems from a pQCD-based energy loss model that is constrained by light- and h…

hep-ph2023

High- Suppression in Small Systems

Coleridge Faraday, W. A. Horowitz

We present first results for leading hadron suppression in small collision systems, from a convolved radiative and collisional pQCD energy loss model which receives a short path le…