Bulletin of the American Physical Society
2018 Joint Fall Meeting of the Texas Sections of APS, AAPT and Zone 13 of the SPS
Volume 63, Number 18
Friday–Saturday, October 19–20, 2018; University of Houston, Houston, Texas
Session E04: Nuclear Physics
4:15 PM–5:51 PM,
Friday, October 19, 2018
Science and Engineering Classroom (SEC)
Room: 204
Chair: Anthony Timmins, University of Houston
Abstract ID: BAPS.2018.TSF.E04.2
Abstract: E04.00002 : Freeze-out temperature from net-kaon fluctuations at RHIC*
4:39 PM–4:51 PM
Presenter:
Jamie M Stafford
(Univ of Houston)
Authors:
Jamie M Stafford
(Univ of Houston)
Rene Bellwied
(Univ of Houston)
Jacquelyn Noronha-Hostler
(Rutgers University)
Paolo Parotto
(Univ of Houston)
Israel Portillo Vazquez
(Univ of Houston)
Claudia Ratti
(Univ of Houston)
Collaboration:
Beam Energy Scan Theory (BEST) Topical Collaboration
We compare the mean-over-variance ratio of the net-kaon distribution calculated within a state-of-the-art hadron resonance gas model to the latest experimental data from the Beam Energy Scan at RHIC by the STAR collaboration. Our analysis indicates that it is not possible to reproduce the experimental results using the freeze-out parameters from the existing combined fit of net-proton and net-electric charge mean-over-variance. The strange mesons need about 10-15 MeV higher temperatures than the light hadrons at the highest collision energies. In view of the future lambda fluctuation measurements, we predict the lambda variance-over-mean and skewness-times-variance at the light and strange chemical freeze-out parameters. We observe that the lambda fluctuations are sensitive to the difference in the freeze-out temperatures established in this analysis. Our results have implications for other phenomenological models in the field of relativistic heavy ion collisions.
*This material is based upon work supported by the National Science Foundation under grants no. PHY-1654219 and OAC-1531814 and the Department of Energy under grant DEFG02-07ER41521.
To cite this abstract, use the following reference: http://meetings.aps.org/link/BAPS.2018.TSF.E04.2
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