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- W3010611286 abstract "A system size scan program was recently proposed for the STAR experiments at the Relativistic Heavy Ion Collider (RHIC). In this study, we employ a multiphase transport (ampt) model for considering the bulk properties at the freeze-out stage for $^{10}mathrm{B}+^{10}mathrm{B}$, $^{12}mathrm{C}+^{12}mathrm{C}$, $^{16}mathrm{O}+^{16}mathrm{O}$, $^{20}mathrm{Ne}+^{20}mathrm{Ne}$, $^{40}mathrm{Ca}+^{40}mathrm{Ca}$, $^{96}mathrm{Zr}+^{96}mathrm{Zr}$, and $^{197}mathrm{Au}+^{197}mathrm{Au}$ collisions at RHIC energies $sqrt{{s}_{NN}}$ of 200, 20, and 7.7 GeV. The results for $^{197}mathrm{Au}+^{197}mathrm{Au}$ collisions are comparable with those of previous experimental STAR data. The transverse momentum ${p}_{T}$ spectra of charged particles (${ensuremath{pi}}^{ifmmodepmelsetextpmfi{}}$, ${K}^{ifmmodepmelsetextpmfi{}}$, $p$, and $overline{p}$) at the kinetic freeze-out stage, based on a blast-wave model, are also discussed. In addition, we use a statistical thermal model to extract the parameters at the chemical freeze-out stage, which agree with those from other thermal model calculations. It was found that there is a competitive relationship between the kinetic freeze-out parameter ${T}_{mathrm{kin}}$ and the radial expansion velocity ${ensuremath{beta}}_{T}$, which also agrees with the STAR or ALICE results. We found that the chemical freeze-out strangeness potential ${ensuremath{mu}}_{s}$ remains constant in all collision systems and that the fireball radius $R$ is dominated by $ensuremath{langle}{N}_{mathrm{Part}}ensuremath{rangle}$, which can be well fitted by a function of $a{ensuremath{langle}{N}_{mathrm{Part}}ensuremath{rangle}}^{b}$ with $bensuremath{approx}1/3$. In addition, we calculated the nuclear modification factors for different collision systems with respect to the $^{10}mathrm{B}+^{10}mathrm{B}$ system, and found that they present a gradual suppression within a higher ${p}_{T}$ range from small to large systems." @default.
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- W3010611286 date "2020-03-09" @default.
- W3010611286 modified "2023-10-17" @default.
- W3010611286 title "Nuclear system size scan for freeze-out properties in relativistic heavy-ion collisions by using a multiphase transport model" @default.
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- W3010611286 doi "https://doi.org/10.1103/physrevc.101.034906" @default.
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