STAR's Beam Energy Scan-II data reveal non-monotonic fluctuations, hadronic-to-partonic transitions, and first experimental evidence for a weakly bound p-Omega dibaryon state.
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JAM model simulations with the new CIGAR framework compute proton cumulants at √sNN = 3.2-4.5 GeV as a non-critical baseline for QCD critical point searches.
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Recent highlights from the STAR Experiment
STAR's Beam Energy Scan-II data reveal non-monotonic fluctuations, hadronic-to-partonic transitions, and first experimental evidence for a weakly bound p-Omega dibaryon state.
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Proton High-Order Cumulants in Au+Au Collisions at High Baryon Density from JAM with a Centrality-Independent Framework
JAM model simulations with the new CIGAR framework compute proton cumulants at √sNN = 3.2-4.5 GeV as a non-critical baseline for QCD critical point searches.