English

Production of strange particles at intermediate pT at RHIC

Nuclear Theory 2013-05-29 v3 Nuclear Experiment

Abstract

The recombination model is applied to the production of K,ϕ,ΛK, \phi, \Lambda and Ω\Omega at all pTp_T in central Au+Au collisions. The thermal-shower component of the recombination is found to be important for KK and Λ\Lambda, but only in a minor way for ϕ\phi and Ω\Omega in the intermediate to high pTp_T region. The normalization and inverse slope of the thermal partons in the strange sector are determined by fitting the low-pTp_T data. At higher pTp_T the data of K,ϕ,ΛK, \phi, \Lambda and Ω\Omega in the log scale are all well reproduced in our study that extends the thermal contribution and includes the shower contribution. The calculated result on the Λ/K\Lambda/K ratio rises to a maximum of around 2 at pT4p_T\approx 4 GeV/c, arching over the data in linear scale. The production of ϕ\phi and Ω\Omega are shown to arise mainly from the recombination of thermal partons, thus exhibiting exponential pTp_T dependences in agreement with the data. Their ratio, RΩ/ϕR_{\Omega/\phi}, rises linearly to pT4p_T\approx 4 GeV/c and develops a maximum at pT5.5p_T\approx 5.5 GeV/c. It is argued that the pTp_T spectra of ϕ\phi and Ω\Omega reveal directly the partonic nature of the thermal source that characterizes quark-gluon plasma. Comments are made on the Ω\Omega puzzle due to the simultaneous observation of both the exponential behavior of the Ω\Omega spectrum in pTp_T and the existence of low-pTp_T particles associated with Ω\Omega as trigger.

Keywords

Cite

@article{arxiv.nucl-th/0602024,
  title  = {Production of strange particles at intermediate pT at RHIC},
  author = {Rudolph C. Hwa and C. B. Yang},
  journal= {arXiv preprint arXiv:nucl-th/0602024},
  year   = {2013}
}

Comments

Revised manuscript with new figures