PAPER / ARXIV:2609.16753
Robert Vertesi
RESUMO
We introduce the hadron-anchored energy correlator (HAEC), a jet-restricted realization of the fragmentation energy correlator and the semi-inclusive energy correlator frameworks, and apply it to heavy-flavor-tagged jets in hadron collisions. Using \textsc{Pythia}~8 simulations of ${\rm D}^0$- and $\Lambda_c^+$-tagged jets, we find a pronounced, localized suppression of energy flow around the $\Lambda_c^+$ relative to the ${\rm D}^0$, followed by a sharp transition scaling as $\theta_0\propto1/p_{\rm T}^{\rm jet}$ with little tune dependence. The conventional jet-axis radial profile shows qualitatively different color-reconnection dependence, suggesting reduced sensitivity of HAEC to jet-axis effects. A beauty-sector study can distinguish a heavy-quark-mass origin from a local fragmentation-vertex origin.
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