English

Symmetry energy investigation with pion production from Sn+Sn systems

Nuclear Experiment 2020-12-23 v1 Nuclear Theory

Abstract

In the past two decades, pions created in the high density regions of heavy ion collisions have been predicted to be sensitive at high densities to the symmetry energy term in the nuclear equation of state, a property that is key to our understanding of neutron stars. In a new experiment designed to study the symmetry energy, the multiplicities of negatively and positively charged pions have been measured with high accuracy for central 132^{132}Sn+124^{124}Sn, 112^{112}Sn+124^{124}Sn, and 108^{108}Sn+112^{112}Sn collisions at E/A=270 MeVE/A=270~\mathrm{MeV} with the Sπ\piRIT Time Projection Chamber. While the uncertainties of individual pion multiplicities are measured to 4\%, those of the charged pion multiplicity ratios are measured to 2\%. We compare these data to predictions from seven major transport models. The calculations reproduce qualitatively the dependence of the multiplicities and their ratios on the total neutron to proton number in the colliding systems. However, the predictions of the transport models from different codes differ too much to allow extraction of reliable constraints on the symmetry energy from the data. This finding may explain previous contradictory conclusions on symmetry energy constraints obtained from pion data in Au+Au system. These new results call for better understanding of the differences among transport codes, and new observables that are more sensitive to the density dependence of the symmetry energy.

Keywords

Cite

@article{arxiv.2012.06976,
  title  = {Symmetry energy investigation with pion production from Sn+Sn systems},
  author = {G. Jhang and J. Estee and J. Barney and G. Cerizza and M. Kaneko and J. W. Lee and W. G. Lynch and T. Isobe and M. Kurata-Nishimura and T. Murakami and C. Y . Tsang and M. B. Tsang and R. Wang and D. S. Ahn and L. Atar and T. Aumann and H. Baba and K. Boretzky and J. Brzychczyk and N. Chiga and N. Fukuda and I. Gasparic and B. Hong and A. Horvat and K. Ieki and N. Inabe and Y. J. Kim and T. Kobayashi and Y. Kondo and P. Lasko and H. S. Lee and Y. Leifels and J. Łukasik and J. Manfredi and A. B. McIntosh and P. Morfouace and T. Nakamura and N. Nakatsuka and S. Nishimura and R. Olsen and H. Otsu and P. Pawłowski 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 Z. Sosin and T. Sumikama and H. Suzuki and D. Suzuki and H. Takeda and S. Tangwancharoen and H. Toernqvist and Y. Togano and Z. G. Xiao and S. J. Yennello and J. Yurkon and Y. Zhang and Maria Colonna and Dan Cozma and Paweł Danielewicz and Hannah Elfner and Natsumi Ikeno and Che Ming Ko and Justin Mohs and Dmytro Oliinychenko and Akira Ono and Jun Su and Yong Jia Wang and Hermann Wolter and Jun Xu and Ying-Xun Zhang and Zhen Zhang},
  journal= {arXiv preprint arXiv:2012.06976},
  year   = {2020}
}

Comments

8 pages, 4 figures, 1 table (accepted for publication in PLB)