KnowraHeavy-ion collisionLinked fromLinked fromThe 11 pages that link to Heavy-ion collision, each with the reason it gives.All 11Broader topic 2Related 8Narrower topic 1Quark–gluon plasmaBroader topic: The short-lived plasma is formed in the hottest central region of these collisions.HadronizationRelated: Its evolving medium makes hadronization sensitive to collective dynamics and parton recombination.GSI Helmholtz Centre for Heavy Ion ResearchRelated: GSI beams collide with targets to probe nuclear structure and matter under extreme conditions.CMS experimentRelated: CMS also studies lead-ion collisions and the properties of quark-gluon plasma.Relativistic Heavy Ion ColliderNarrower topic: RHIC creates these collisions to probe matter at extreme temperature and density.Particle identificationRelated: Species-resolved yields reveal the composition and evolution of the collision products.Strange quarkRelated: Such collisions produce abundant strange hadrons and probe quark-gluon plasma.UnbihexiumRelated: Experiments seeking new elements use such collisions to create and detect candidate nuclei.J/ψ mesonRelated: Such collisions produce J/ψ mesons used to investigate strong-interaction matter.UnhexquadiumRelated: Such collisions are the experimental route used to produce candidate superheavy nuclei.UnquadbiumBroader topic: Such collisions could create a compound nucleus with 142 protons.