Searching for in Relativistic Heavy Ion Collisions
arXiv:1603.04524 · doi:10.1016/j.physletb.2017.05.061
Abstract
We study the doubly charmed baryon in high energy nuclear collisions. We solve the three-body Schroedinger equation with relativistic correction and calculate the yield and transverse momentum distribution via coalescence mechanism. For production in central Pb+Pb collisions at LHC energy, the yield is extremely enhanced, and the production cross section per binary collision is one order of magnitude larger than that in p+p collisions. This indicates that, it is most probable to discover in heavy ion collisions and its discovery can be considered as a probe of the quark-luon plasma formation.
5 pages and 4 figures
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Cited by in corpus (12)
- Extraction of Heavy-Flavor Transport Coefficients in QCD Matter
- Fully-heavy tetraquarks in strongly interacting medium
- Mass spectra of doubly heavy tetraquarks in an improved chromomagnetic interaction model
- Doubly charmed baryon production in heavy ion collisions
- X(3872) Production in Relativistic Heavy-Ion Collisions
- Multi-charmed and singled charmed hadrons from coalescence: yields and ratios in different collision systems at LHC
- Production of multi-charmed hadrons by recombination in heavy ion collisions
- Heavy flavor dissociation in the framework of multi-body Dirac equations
- Production of doubly charmed hadron and in relativistic heavy ion collisions
- Fate of the doubly heavy spin baryons in a dense medium
- Relativistic Borromean States
- Spectroscopy and Radiative Decays of and Baryons in a Quark-Diquark Model