International audienceThe formation of deuterons in heavy-ion collisions at relativistic energies is investigated by employing two recently advanced models—the minimum spanning tree (MST) method and the coalescence model—by embedding them in the parton-hadron quantum molecular dynamics (PHQMD) and the ultrarelativistic quantum molecular dynamics (UrQMD) transport approaches. While the coalescence mechanism combines nucleons into deuterons at the kinetic freeze-out hypersurface, the MST identifies the clusters during the different stages of time evolution. We find that both clustering procedures give very similar results for the deuteron observables in the UrQMD as well as in the PHQMD environment. Moreover, the results agree well with the e...
The deuteron coalescence parameter $B_2$ in proton+proton and nucleus+nucleus collisions in the ener...
International audienceWe study light cluster and hypernuclei production in heavy-ion collisions from...
International audienceWe study cluster and hypernuclei production in heavy-ion collisions at relativ...
International audienceThe formation of deuterons in heavy-ion collisions at relativistic energies is...
International audienceWe study the production of clusters and hypernuclei at midrapidity employing t...
International audienceThe understanding of the mechanisms for the production of weakly bound cluster...
The deuteron coalescence parameter $$B_2$$ in proton+proton and nucleus+nucleus collisions in the en...
In the frame of the Wigner function formalism, we derive a coalescence model to use with a hydrodyna...
Using a density matrix approach to describe the process of coalescence, we calculate the coalescence...
International audienceWe present the novel microscopic n-body dynamical transport approach PHQMD (Pa...
International audienceCluster and hypernuclei production in heavy-ion collisions is presently under ...
We present the novel microscopic n-body dynamical transport approach PHQMD (Parton-Hadron-Quantum-Mo...
International audienceWe present the novel microscopic n-body dynamical transport approach PHQMD(Par...
The deuteron coalescence parameter $B_2$ in proton+proton and nucleus+nucleus collisions in the ener...
International audienceWe study light cluster and hypernuclei production in heavy-ion collisions from...
International audienceWe study cluster and hypernuclei production in heavy-ion collisions at relativ...
International audienceThe formation of deuterons in heavy-ion collisions at relativistic energies is...
International audienceWe study the production of clusters and hypernuclei at midrapidity employing t...
International audienceThe understanding of the mechanisms for the production of weakly bound cluster...
The deuteron coalescence parameter $$B_2$$ in proton+proton and nucleus+nucleus collisions in the en...
In the frame of the Wigner function formalism, we derive a coalescence model to use with a hydrodyna...
Using a density matrix approach to describe the process of coalescence, we calculate the coalescence...
International audienceWe present the novel microscopic n-body dynamical transport approach PHQMD (Pa...
International audienceCluster and hypernuclei production in heavy-ion collisions is presently under ...
We present the novel microscopic n-body dynamical transport approach PHQMD (Parton-Hadron-Quantum-Mo...
International audienceWe present the novel microscopic n-body dynamical transport approach PHQMD(Par...
The deuteron coalescence parameter $B_2$ in proton+proton and nucleus+nucleus collisions in the ener...
International audienceWe study light cluster and hypernuclei production in heavy-ion collisions from...
International audienceWe study cluster and hypernuclei production in heavy-ion collisions at relativ...