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$D\bar{D}^*$ scattering and $\chi_{c1}(3872)$ in nuclear matter

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abstract

We study the behaviour of the $\chi_{c1}(3872)$, also known as $X(3872)$, in dense nuclear matter. We begin from a picture in vacuum of the $X(3872)$ as a purely molecular $(D \bar D^*-c.c.)$ state, generated as a bound state from a heavy-quark symmetry leading-order interaction between the charmed mesons, and analyze the $D \bar D^*$ scattering $T-$matrix ($T_{D \bar D^*}$) inside of the medium. Next, we consider also mixed-molecular scenarios and, in all cases, we determine the corresponding $X(3872)$ spectral function and the $D \bar D^*$ amplitude, with the mesons embedded in the dense environment. We find important nuclear corrections for $T_{D \bar D^*}$ and the pole position of the resonance, and discuss the dependence of these results on the $D \bar D^*$ molecular component in the $X(3872)$ wave-function. These predictions could be tested in the finite-density regime that can be accessed in the future CBM and PANDA experiments at FAIR.

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2025 1

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Testing the nature of the $\Sigma^*(1430)$

hep-ph · 2025-05-21 · conditional · novelty 6.0

A unitarized coupled-channel model using SU(3) couplings finds that a largely non-molecular Sigma*(1430) is either too narrow to match Belle data or becomes heavily dressed by meson-baryon components.

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  • Testing the nature of the $\Sigma^*(1430)$ hep-ph · 2025-05-21 · conditional · none · ref 58 · internal anchor

    A unitarized coupled-channel model using SU(3) couplings finds that a largely non-molecular Sigma*(1430) is either too narrow to match Belle data or becomes heavily dressed by meson-baryon components.