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Direct observation of the dead-cone effect in QCD

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arxiv 2106.05713 v2 pith:RPZYYM3R submitted 2021-06-10 nucl-ex hep-exhep-ph

classification nucl-exhep-exhep-ph
keywords dead-conedirectobservationpartoneffectmassparticlepartons
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

In particle collider experiments, elementary particle interactions with large momentum transfer produce quarks and gluons (known as partons) whose evolution is governed by the strong force, as described by the theory of quantum chromodynamics (QCD). These partons subsequently emit further partons in a process that can be described as a parton shower which culminates in the formation of detectable hadrons. Studying the pattern of the parton shower is one of the key experimental tools for testing QCD. This pattern is expected to depend on the mass of the initiating parton, through a phenomenon known as the dead-cone effect, which predicts a suppression of the gluon spectrum emitted by a heavy quark of mass $m_{\rm{Q}}$ and energy $E$, within a cone of angular size $m_{\rm{Q}}$/$E$ around the emitter. Previously, a direct observation of the dead-cone effect in QCD had not been possible, owing to the challenge of reconstructing the cascading quarks and gluons from the experimentally accessible hadrons. We report the direct observation of the QCD dead cone by using new iterative declustering techniques to reconstruct the parton shower of charm quarks. This result confirms a fundamental feature of QCD. Furthermore, the measurement of a dead-cone angle constitutes a direct experimental observation of the non-zero mass of the charm quark, which is a fundamental constant in the standard model of particle physics.

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Cited by 3 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. How to identify the dead cone in the top-quark jet

    hep-ph 2025-12 conditional novelty 6.0 of 10

    A Monte-Carlo study shows the top-quark dead cone can be extracted from top jets by extrapolating momentum spectra to zero b-decay angle, matching MLLA expectations to ~15%.

  2. Exploring small-angle emissions in charm quark jets in proton-proton collisions at $\sqrt{s}$ = 5.02 TeV

    nucl-ex 2025-07 accept novelty 6.0 of 10

    CMS reports the first late-kT groomed splitting-angle distributions for prompt D0 jets at pT 100-120 GeV and finds suppression consistent with the charm dead cone, while soft-drop suppression appears driven by gluon s...

  3. Investigation of the performance of a GNN-based b-jet tagging method in heavy-ion collisions

    physics.data-an 2025-06 conditional novelty 6.0 of 10

    A GNN-based b-jet tagger adapted from ATLAS's GN1 retains good performance on simulated Pb-Pb background when retrained per centrality, despite degradation when applied out-of-the-box.

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