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January 16, 20260 citationsOpen Access

Production of double strange hypernuclei and exotic nuclei in central Au+Au collisions at s₍₍ = 3 GeV

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NBN. BuyukcizmeciTRTom ReichertABA. S. Botvina

Key Points

  • This research aims to enhance understanding of nucleosynthesis during central collisions of relativistic ions.
  • Extended theoretical model including dynamical and statistical stages.
  • Applied to predict outcomes in central Au+Au collisions at 3 GeV.
  • Analysis of experimental data from GSI and RHIC-BES energy ranges.
  • Predicted multiplicities of double strange hypernuclei up to ΛΛ4H.
  • Forecasted production of intermediate mass nuclei up to 88Be.
  • Identified nuclei via measurements of correlated decay particles.

Abstract

We extend the theoretical approach which includes the dynamical and statistical stages for the description of the nucleosynthesis in central collisions of relativistic ions. Previously, this approach was successfully applied to describe experimental data on both normal nuclei and single strange hypernuclei production in the GSI and RHIC-BES energy range. We predict the multiplicities of double strange hypernuclei up to ΛΛ4ΛΛ4​H and further intermediate mass nuclei up to 88Be for Au+Au central collisions at sNNsNN​​ = 3 GeV, recently explored by the STAR experiments. These nuclei can be identified by the measurement of the correlated particles coming after their decay. Such observations are a crucial test for the nucleosynthesis mechanism.

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Cite This Study

Buyukcizmeci et al. (2025) studied this question.

synapsesocial.com/papers/6969d428940543b9777090c0https://doi.org/10.15120/gsi-2026-00015
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