2026-07-072026-07-07http://salesiana.dossiersoluciones.com/handle/123456789/200045We discuss the flavor of leading jet partons as a valuable probe of nuclear matter. We point out that the coupling of jets to nuclear matter naturally leads to an alteration of jet chemistry even at high transverse momentum $p_T$. In particular, QCD jets coupling to a chemically equilibrated quark gluon plasma in nuclear collisions, will lead to hadron ratios at high transverse momentum $p_T$ that can differ significantly from their counterparts in $p+p$ collisions. Flavor measurements could complement energy loss as a way to study interactions of hard QCD jets with nuclear matter. Roughly speaking they probe the inverse mean free path $1/λ$, while energy loss probes the average squared momentum transfer $μ^2/λ$. We present some estimates for the rate of jet conversions in a consistent Fokker-Planck framework and their impact on future high-$p_T$ identified hadron measurements at RHIC and LHC. We also suggest some novel observables to test flavor effects.12 pages, 11 figures, version to appear in PRCNuclear TheoryHigh Energy Physics - PhenomenologyProbing Nuclear Matter with Jet Conversionstext