arXiv · 1707.03598
Possible hadronic molecules composed of the doubly charmed baryon and nucleon
Abstract
We perform a systematical investigation of the possible deuteron-like bound states with configuration $\Xi_{cc}N (\bar{N})$, where $N(\bar{N})$ denotes the nucleon (anti-nucleon), in the framework of the one-boson-exchange-potential model. In the spin-triplet sector we take into account both the ${}^3S_1$ and ${}^3D_1$ channels due to non-vanishing tensor force. There exist several candidates of the loosely bound molecular states for the $\Xi_{cc}N$ and $\Xi_{cc}\bar{N}$ systems, which lie below the threshold of $\Lambda_c\Lambda_c$ or $\Lambda_c{\bar\Lambda}_c$. We also investigate the possible loosely bound states with configurations $\Lambda_cN(\bar{N})$ and $\Sigma_cN(\bar{N})$. These molecular candidates may be searched for at Belle II and LHC in the near future.
Explore related subjects
Keep this discovery
Lu Meng, Ning Li, Shi-lin Zhu. 2017-07-12. Possible hadronic molecules composed of the doubly charmed baryon and nucleon. https://doi.org/10.1140/epja/i2018-12578-2
Cite the original work for its findings. Save a collection to share your selection of sources.