Constraining nucleon effective masses with flow and stopping observables from the S$\pi$RIT experiment
Abstract
Properties of the nuclear equation of state (EoS) can be probed by measuring the dynamical properties of nucleus-nucleus collisions. In this study, we present the directed flow (), elliptic flow () and stopping (VarXZ) measured in fixed target Sn + Sn collisions at 270 AMeV with the SRIT Time Projection Chamber. We perform Bayesian analyses in which EoS parameters are varied simultaneously within the Improved Quantum Molecular Dynamics-Skyrme (ImQMD-Sky) transport code to obtain a multivariate correlated constraint. The varied parameters include symmetry energy, , and slope of the symmetry energy, , at saturation density, isoscalar effective mass, , isovector effective mass, and the in-medium cross-section enhancement factor . We find that the flow and VarXZ observables are sensitive to the splitting of proton and neutron effective masses and the in-medium cross-section. Comparisons of ImQMD-Sky predictions to the SRIT data suggest a narrow range of preferred values for , and .
Keywords
Cite
@article{arxiv.2312.06678,
title = {Constraining nucleon effective masses with flow and stopping observables from the S$\pi$RIT experiment},
author = {C. Y. Tsang and M. Kurata-Nishimura and M. B. Tsang and W. G. Lynch and Y. X. Zhang and J. Barney and J. Estee and G. Jhang and R. Wang and M. Kaneko and J. W. Lee and T. Isobe and T. Murakami and D. S. Ahn and L. Atar and T. Aumann and H. Baba and K. Boretzky and J. Brzychczyk and G. Cerizza and N. Chiga and N. Fukuda and I. Gasparic and B. Hong and A. Horvat and J. Manfredi and A. B. McIntosh and P. Morfouace and T. Nakamura and N. Nakatsuka and S. Nishimura and H. Otsu and P. Pawlowski and K. Pelczar and D. Rossi and H. Sakurai and C. Santamaria and H. Sato and H. Scheit and R. Shane and Y. Shimizu and H. Simon and A. Snoch and A. Sochocka and T. Sumikama and H. Suzuki and D. Suzuki and H. Takeda and S. Tangwancharoen and H. Törnqvist and Y. Togano and Z. G. Xiao and S. J. Yennello and Y. Zhang and S$π$RIT collaboration},
journal= {arXiv preprint arXiv:2312.06678},
year = {2024}
}