We revisit the problem of the production of light atomic nuclei in ultrarelativistic heavy-ion collisions. While their production systematics is well produced by hadro-chemical freezeout at temperatures near the QCD pseudo-critical temperature, their small binding energies of a few MeV per nucleon suggest that they cannot survive as bound states under these conditions. Here, we adopt the concept of effective chemical potentials in the hadronic evolution from chemical to thermal freezeout (at typically $ T_{\mathrm{fo}} \simeq 100$ MeV), which, despite frequent elastic rescatterings in hadronic matter, conserves the effective numbers of particles which are stable under strong interactions, most notably pions, kaons and nucleons. It turns out...
We review J. Zimanyi's key contributions to the theoretical understanding of dynamical freeze-out in...
The consequences of hadro-chemical freezeout for the subsequent hadron gas evolution in central heav...
We review J. Zimányi's key contributions to the theoretical understanding of dynamical freeze-out in...
The creation of loosely bound objects in heavy ion collisions, e.g. light clusters, near the phase t...
We study the identified particle ratios produced at mid-rapidity (y<0.5) in heavy-ion collisions, al...
The evolution of (non-strange) antibaryon abundances in the hadronic phase of central heavy-ion coll...
The statistical hadronization model successfully describes the yields of hadrons and light nuclei fr...
International audienceThe multiplicities of light (anti)nuclei were measured recently by the ALICE c...
The physical processes behind the production of light nuclei in heavy ion collisions are unclear. Th...
Recent results on baryon production in relativistic heavy ion collisions show that a revision of the...
We investigate chemical and thermal freeze-out time dependencies for strange particle production for...
We introduce a novel approach based on elastic and inelastic scattering rates to extract the hyper-s...
Bazavov A, Ding H, Hegde P, et al. Freeze-Out Conditions in Heavy Ion Collisions from QCD Thermodyna...
We investigate the chemical freeze-out in heavy-ion collisions (HICs) and the impact of the hadronic...
The present knowledge about hadrons produced in relativistic heavy ion collisions is compatible with...
We review J. Zimanyi's key contributions to the theoretical understanding of dynamical freeze-out in...
The consequences of hadro-chemical freezeout for the subsequent hadron gas evolution in central heav...
We review J. Zimányi's key contributions to the theoretical understanding of dynamical freeze-out in...
The creation of loosely bound objects in heavy ion collisions, e.g. light clusters, near the phase t...
We study the identified particle ratios produced at mid-rapidity (y<0.5) in heavy-ion collisions, al...
The evolution of (non-strange) antibaryon abundances in the hadronic phase of central heavy-ion coll...
The statistical hadronization model successfully describes the yields of hadrons and light nuclei fr...
International audienceThe multiplicities of light (anti)nuclei were measured recently by the ALICE c...
The physical processes behind the production of light nuclei in heavy ion collisions are unclear. Th...
Recent results on baryon production in relativistic heavy ion collisions show that a revision of the...
We investigate chemical and thermal freeze-out time dependencies for strange particle production for...
We introduce a novel approach based on elastic and inelastic scattering rates to extract the hyper-s...
Bazavov A, Ding H, Hegde P, et al. Freeze-Out Conditions in Heavy Ion Collisions from QCD Thermodyna...
We investigate the chemical freeze-out in heavy-ion collisions (HICs) and the impact of the hadronic...
The present knowledge about hadrons produced in relativistic heavy ion collisions is compatible with...
We review J. Zimanyi's key contributions to the theoretical understanding of dynamical freeze-out in...
The consequences of hadro-chemical freezeout for the subsequent hadron gas evolution in central heav...
We review J. Zimányi's key contributions to the theoretical understanding of dynamical freeze-out in...