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Mass suppression effect in QCD radiation and hadron angular distribution in jet

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abstract

The finite mass of the heavy quark suppresses the collimated radiations, which is generally referred to as the dead cone effect. In this paper, we study the distribution of hadron multiplicity over the hadron opening angle with respect to the jet axis in various flavors of jets. The corresponding measurement can be the most straightforward and simplest to explore the dynamical evolution of the radiations in the corresponding jet, which can expose the mass effect. We also propose the transverse energy-weighted angular distribution which sheds light on the interplay between perturbative and nonperturbative effects in the radiation. With Monte-Carlo simulations, our calculation shows that the dead cone effect can be clearly seen by taking the ratio between the b jet and the light-quark (inclusive) jet, promising to be measured at the LHC in the future.

fields

hep-ph 1

years

2025 1

verdicts

CONDITIONAL 1

representative citing papers

Heavy Flavor Jet Substructure at Lepton Colliders

hep-ph · 2025-02-11 · conditional · novelty 4.0

NLL-accurate predictions for heavy-flavor energy correlation functions and jet angularities in e+e- collisions show all tested Monte Carlo generators overestimate the dead-cone suppression.

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  • Heavy Flavor Jet Substructure at Lepton Colliders hep-ph · 2025-02-11 · conditional · none · ref 38 · internal anchor

    NLL-accurate predictions for heavy-flavor energy correlation functions and jet angularities in e+e- collisions show all tested Monte Carlo generators overestimate the dead-cone suppression.