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arXiv:2412.02629·v2·High Energy Physics — Phenomenology

Heavy quark mass effects in the Energy-Energy Correlation in the back-to-back region

Ugo Giuseppe Aglietti🇮🇹 · Giancarlo Ferrera🇮🇹

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Abstract

We consider heavy quark mass () effects in the Energy-Energy Correlation function in at high energy , in the back-to-back (two-jet) region. In the ultra-relativistic limit, , the QCD Sudakov form factor in impact parameter (-)space reads: \begin{eqnarray} \log S(b) &=& - \int_{m^2}^{Q^2} \frac{dk^2}{k^2} \left\{ \log\left(\frac{Q^2}{k^2}\right) A[\alpha_S(k^2)] + B[\alpha_S(k^2)]\right\} [1-J_0(b k)] \nonumber\\ && - \int_0^{m^2} \frac{dk^2}{k^2} \left\{ \log\left(\frac{Q^2}{m^2}\right) A[\alpha_S(k^2)] + D[\alpha_S(k^2)] \right\} [1-J_0(b k)]. \nonumber \end{eqnarray} The double-log function describes the effects of soft gluons, quasi-collinear to the original quark-antiquark pair, while the single-log functions and describe hard collinear radiation and soft radiation not log-collinearly enhanced, respectively. The usual logarithmic expansion of the low transverse momenta contribution to the form factor () involves two new function series. An explicit evaluation of the heavy quark form factor at Next-to-Next-to-Leading Logarithmic accuracy is presented. The relation of our results with the well-known (classical) dead-cone effect in gauge theories is analyzed. At Next-to-Leading Logarithmic (NLL) accuracy, an improved formula for the dead cone is proposed; the soft term produces an increase of the dead-cone opening angle of a factor . However, beyond NLL, a physical interpretation of this kind breaks down. The generalization of the above formula to the resummation of shape variables in annihilation, or to the resummation of the transverse momentum distributions in hadron collisions, is also briefly discussed.

Comments: NNLL coefficients included other minor changes and extended bibliography. 30 pages, 4 figures

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