arXiv · 2007.07680
Formation of light nuclei at chemical freezeout: Description within a statistical thermal model
Abstract
The thermal description of light nuclei at the chemical freeze-out has been investigated. First, I have verified the equilibration of the light nuclei and then introduced a new method to investigate the light nuclei formation. One can study the proximity between the phase space density of light nuclei ratios and their hadronic constituents e.g $\bar{d}/d$ and $(\bar{p}\bar{n}/pn)$. I have found that with the exclusion of the decay feed-down from the hadronic yields in the thermal model, the hadronic representations have good agreement with the light nuclei ratios. I have performed a similar analysis with the ratio of $Λ$-hypernuclei and $^3 He$, which is related to the ratio $Λ/p$. In this context, the strangeness population factor $S_3$ has been studied also. These results indicate that the nuclei and hypernuclei formation may occur near the standard chemical freeze-out and before the decay of the hadronic resonances. This method will serve as a guideline to discuss the light nuclei formation and the inclusion of decay into their hadronic constituents.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Deeptak Biswas. 2020-11-03. Formation of light nuclei at chemical freezeout: Description within a statistical thermal model. https://doi.org/10.1103/physrevc.102.054902
Cite the original work for its findings. Save a collection to share your selection of sources.