Properties of the and (and their heavy-quark spin partners) in nuclear matter
arXiv:2306.17673
Abstract
We discuss the modification of the properties of the tetraquark-like and states in dense nuclear matter. We consider the and in vacuum as purely isoscalar and -wave bound states, respectively, dynamically generated from a heavy-quark effective interaction between the charmed mesons. We compute the , , , and spectral functions embedded in a nuclear medium and use them to determine the corresponding and self energies and spectral functions. We find important modifications of the and scattering amplitudes and of the pole position of these exotic states already for , with the normal nuclear density. We also discuss the dependence of these results on the () molecular component in the ( ) wave-function. Owing to the different nature of the and interactions, we find characteristic changes of the in-medium properties of the and , which become increasingly visible as the density increases. The experimental confirmation of the found distinctive density-pattern will give support to the molecular picture of these tetraquark-like states, since in the case they were colourless compact quark structures the density behaviour of their respective nuclear medium spectral functions would likely be similar. Finally, we perform similar analyses for the isoscalar heavy-quark spin symmetry partners of the () and the () by considering the and scattering matrices.
17 pages, 9 figures