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Probing late-stage hadronic interactions at high baryon density via K⁎0 production in the RHIC beam energy scan program

  • M.ZyzakThe STAR Collaboration
  • Texas A and M University
  • Czech Technical University in Prague
  • Joint Inst. for Nuclear Research
  • Panjab University
  • VECC Kolkata
  • ITEP
  • National Research Nuclear University MEPhI
  • Kent State University
  • Fudan University
  • Abilene Christian University
  • Universidad de Tarapacá
  • Shandong University
  • Iiser Berhampur
  • University of California, Riverside
  • Iiser Tirupati
  • University of Jammu
  • SUNY
  • Ohio State University
  • University of Houston
  • Shanghai Institute of Applied Physics, Chinese Academy of Sciences
  • Yale University
  • University of California, Davis
  • Lawrence Berkeley National Laboratory
  • Purdue University
  • Indiana University Bloomington
  • National Institute of Technology, Durgapur
  • Central China Normal University
  • Guangxi Normal University
  • Tsinghua University
  • University of California at Los Angeles
  • Brookhaven National Laboratory
  • University of California at Berkeley
  • Heidelberg University
  • Institute for High Energy Physics (IHEP)
  • American University
  • Rice University
  • Tsukuba University
  • UIC ECE-CSN-Lab
  • University of Kentucky
  • Universite della Calabria
  • Southern Connecticut State University
  • Institute of Modern Physics Chinese Academy of Sciences
  • Valparaiso University
  • Huzhou University
  • University of Chinese Academy of Sciences
  • Academica Sinica
  • National Cheng Kung University
  • Eotvos Lorand University (ELTE)
  • University of Science and Technology of China
  • Sejong University
  • Wayne State University
  • Temple University
  • Lehigh University
  • Wuhan University of Science and Technology
  • South China Normal University
  • Texas Southern University
  • National Institute of Science Education and Research
  • Lovely Professional University
  • Warsaw Institute of Technology
  • Rutgers University–New Brunswick
  • University of Texas at Austin
  • Max-Planck-Institut für Physik
  • Creighton University
  • Iit Patna
  • Ball State University
  • Michigan State University
  • Argonne National Laboratory
  • Chongqing University
  • Second Hospital of Lanzhou University
  • Frankfurt Institute for Advanced Studies

Research output: Contribution to journalArticlepeer-review

1 Scopus citations

Abstract

A precision measurement of the K ⁎0 meson yield is reported in Au+Au collisions at sNN=7.7,11.5,14.6,19.6, and 27 GeV using the high-statistics data sample collected by the STAR experiment during the Beam Energy Scan II (BES-II) program at RHIC. The transeverse momentum ( pT )-integrated yield ratios (K*0+K*0‾)/(K++K) in central collisions show a suppression relative to peripheral collisions at the (1.7–3.6) σ level, while a thermal model without final-stage rescattering overpredicts this ratio with a deviation of (6.9–8.2) σ . These results indicate a loss of the measured K ⁎0 signal in central collisions due to re-scattering of its hadronic decay products in the hadronic phase. The pT -integrated yield of charged kaons exhibits an approximate scaling with charged-particle multiplicity, independent of collision energy and system size. A similar trend is observed for the short-lived K ⁎0 resonance, although significant deviations emerge at lower energies. At BES energies, the K ⁎0/ K ratio shows stronger suppression than at the highest RHIC and LHC energies within a given multiplicity bin, particularly in central and mid-central collisions. This behavior is consistent with changes in the effective hadronic interaction cross section and is supported by transport model calculations, which indicate dominant meson–baryon interactions at lower energies and meson–meson interactions at higher energies.

Original languageEnglish
Article number140389
JournalPhysics Letters B
Volume876
DOIs
StatePublished - May 2026
Externally publishedYes

Keywords

  • BES
  • Hadronic phase
  • Heavy ion collisions
  • Re-scattering
  • Resonance

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