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◆ Journal of High Energy Physics2026-05-05· Physics

Collinear spin correlations of final-state radiation in dense QCD matter

João M. Silva, Alba Soto-Ontoso

原始摘要(英文原文)· Original abstract
A bstract Spin correlations are required to reproduce the correct azimuthal dependence of matrix elements for successive branchings at disparate angles in QCD jets. In this paper, we study modifications to this azimuthal pattern in the presence of a quark-gluon plasma. To that end, we consider a simplified setup of two nested collinear emissions, one inside a medium of fixed length and the second one outside it. The calculation includes both light and heavy-quarks. Further, we do not include medium-induced spin-flip interactions since they are energy suppressed in our formalism. We show that the amplitude of the azimuthal modulation in the presence of a medium is always suppressed with respect to the vacuum baseline, with its magnitude depending on the medium properties and splitting kinematics. For a medium with a momentum space anisotropy, we find that the azimuthal modulation acquires a phase shift ϕ med which is a process-dependent function that again depends on the medium properties and splitting kinematics. This work provides theory guidance for implementing spin-driven interference effects in phenomenological studies of jet quenching in heavy-ion collisions.
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Collinear spin correlations of final-state radiation in dense QCD matter — 科研速览 Science Skim