25–30 Jun 2026
Auditorium Maximum
Europe/Warsaw timezone

Quark mass dependence of the $T_{cc}(3875)^+$ pole

25 Jun 2026, 16:05
20m
Medium lecture hall (A) (Auditorium Maximum)

Medium lecture hall (A)

Auditorium Maximum

Parallel Heavy Flavour (production, spectroscopy) Parallel session A1

Speaker

Raquel Molina Peralta (IFIC-UV)

Description

Recently, several LQCD simulations have proven that the interaction in the isoscalar channel in $DD^*$ scattering is attractive. This channel is naturally connected to the $T_{cc}(3875)^+$ which is observed in the $D^0D^0\pi^+$ invariant mass distribution. However, it remains an open question whether the virtual bound state found in these several LQCD simulations is actually linked to the LHCb experimental observation. In this article we perform an EFT-based analysis of the LQCD data and demonstrate that a proper chiral extrapolation leads to a $T_{cc}$ pole compatible with experiment. At the physical pion mass, we find a virtual bound state with a binding energy $\Delta E=-0.06 \left(^{+1.30}_{-2.20}\right) \left(^{+0.50}_{-1.11}\right)$. Moreover, we extract from a global analysis both the light and heavy quark mass dependence of the $T_{cc}$ pole, and study the role of the $\rho$- and $\pi$-meson exchanges.

Primary author

Raquel Molina Peralta (IFIC-UV)

Co-authors

Alessandro Giachino Fernando Gil-Dominguez

Presentation materials

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