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Skewness, kurtosis, and the fifth and sixth order cumulants of net baryon-number distributions from lattice QCD confront high-statistics STAR data

Authors :
Sayantan Sharma
P. Enns
P. Steinbrecher
J. Goswami
Rasmus Larsen
Alexei Bazavov
Peter Petreczky
Frithjof Karsch
Heng-Tong Ding
D. Bollweg
Christian Schmidt
Swagata Mukherjee
Hiroshi Ohno
P. Hegde
Olaf Kaczmarek
Source :
Physical Review, Physical Review D
Publication Year :
2020
Publisher :
American Physical Society (APS), 2020.

Abstract

We present new results on up to sixth-order cumulants of net baryon-number fluctuations at small values of the baryon chemical potential, μB, obtained in lattice QCD calculations with physical values of light and strange quark masses. Representing the Taylor expansions of higher-order cumulants in terms of the ratio of the two lowest-order cumulants, MB/σB2=χ1B(T,μB)/χ2B(T,μB), allows for a parameter-free comparison with data on net proton-number cumulants obtained by the STAR Collaboration in the Beam Energy Scan at RHIC. We show that recent high-statistics data on skewness and kurtosis ratios of net proton-number distributions, obtained at a beam energy sNN=54.4 GeV, agree well with lattice QCD results on cumulants of net baryon-number fluctuations close to the pseudocritical temperature, Tpc(μB), for the chiral transition in QCD. We also present first results from a next-to-leading-order expansion of fifth- and sixth-order cumulants on the line of the pseudocritical temperatures.

Details

ISSN :
24700029 and 24700010
Volume :
101
Database :
OpenAIRE
Journal :
Physical Review D
Accession number :
edsair.doi.dedup.....06592b020362ab9ab9493082219d500f