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Gluo-dissociation of Heavy Quarkonium in the Quark-Gluon Plasma Revisited

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abstract

Using an effective Hamiltonian derived from the QCD multipole expansion, we calculate the cross sections of gluo-dissociation of heavy quarkonia in the quark-gluon plasma, by including both the chromo-electric dipole ($E_1$) as well as the chromo-magnetic dipole ($M_1$) transition mechanisms. While the former allows to reproduce the results from operator-product-expansion calculations in the Coulomb approximation, the latter as a novel contribution is shown to be significant at low energies close to the threshold. Using thus obtained cross sections, we further carry out a full calculation of the gluo-dissociation rates for various charmonia and bottomonia within a non-relativitic in-medium potential model. The $M_1$ contribution turns out to be most prominent for the $J/\psi$ and accounts for $\sim 10\%-25\%$ of the total ($E1+M1$) dissociation rate at temperatures close to the transition temperature.

fields

nucl-th 1

years

2026 1

verdicts

UNVERDICTED 1

representative citing papers

Absorption of 1$P$-wave heavy charmonium $\chi_{c1}(1P)$ in nuclei

nucl-th · 2026-04-01 · unverdicted · novelty 3.0

Calculations of excitation functions, momentum spectra, and transparency ratios for χ_c1(1P) on 12C and 184W nuclei demonstrate sensitivity to different absorption cross-section scenarios, proposed for extraction via future CEBAF data.

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  • Absorption of 1$P$-wave heavy charmonium $\chi_{c1}(1P)$ in nuclei nucl-th · 2026-04-01 · unverdicted · none · ref 54 · internal anchor

    Calculations of excitation functions, momentum spectra, and transparency ratios for χ_c1(1P) on 12C and 184W nuclei demonstrate sensitivity to different absorption cross-section scenarios, proposed for extraction via future CEBAF data.