Deuteron-Deuteron Correlation Function in Nucleus-Nucleus Collisions
arXiv:2103.15761 · doi:10.1103/PhysRevC.104.024909
Abstract
A formula of the - correlation function is derived. The deuterons are treated either as elementary particles or as neutron-proton bound states. In the first case the deuterons are directly emitted from a source and in the second one the deuteron formation is a final-state process simultaneous with a generation of - correlation. The source radius of deuterons formed due to final-state interactions is bigger by the factor of than that of directly emitted deuterons. To check how sizable is the effect we compute the - correlation function taking into the Bose-Einstein statistics of deuterons, the -wave scattering due to strong interaction and the Coulomb repulsion. The correlation function is shown to be sensitive to the source radius for sources which are sufficiently small with RMS radii smaller than 3.5 fm. Otherwise the correlation function is dominated by the Coulomb repulsion and weakly depends on the source radius. Measurements which can make use of our finding are discussed.
9 pages, 4 figures, published version
References in corpus (3)
Cited by in corpus (11)
- Strangeness baryon-baryon interactions and femtoscopic correlation functions in covariant chiral effective field theory
- Exploring the strong interaction of three-body systems at the LHC
- Femtoscopic study of the interaction
- Momentum correlation of light nuclei in Au + Au collisions at = 2.0 7.7 GeV
- Exploring the interaction via femtoscopic study
- Elliptic flow of deuterons in ultrarelativistic heavy-ion collisions
- Femtoscopic study of the interaction in heavy-ion collisions
- Femtoscopic study of the proton-proton and proton-deuteron systems in heavy-ion collisions at the LHC
- Theoretical study on and correlation functions
- Accessing the deuteron source with pion-deuteron femtoscopy in Pb-Pb collisions at TeV
- Theoretical study of the correlation function