Heavy molecules and one--exchange model
arXiv:1707.08306 · doi:10.1103/PhysRevD.96.116012
Abstract
In the framework of the one-boson-exchange model, we explore whether the intermediate and short-range forces from -exchange can be strong enough to bind heavy molecular states. , and systems have been studied and compared. We find that the force from -exchange is attractive and dominant, whereas the -exchange force not. As a consequence, the S-wave , , and can be possible molecular candidates. We further indicate that one hadron-hadron system with more light quarks can be easier to form a bound state. As a byproduct, by studying the heavy-quark mass dependence for the -like and -like systems, we find that the charm/bottom sector can easily accommodates molecular states. Finally, the and systems are investigated. Our results indicate that they are also likely to form bound states. By including one--exchange forces providing additional attraction when coupled channels are included, we expect many molecular states in heavy quark sectors.
8 pages, 3 figures, 8 tables
References in corpus (6)
- Prediction of narrow and resonances with hidden charm above 4 GeV
- Is X(3872) {\sl Really} a Molecular State?
- Is X(3872) a molecule?
- Isospin breaking, coupled-channel effects, and X(3872)
- Hadronic Molecular States Composed of Heavy Flavor Baryons
- The Spin-orbit force, recoil corrections and possible and molecular states