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- W3014867029 abstract "Abstract We argue that the difference in the yield ratio <?CDATA ${{{S}}_{rm{3}}} = dfrac{{{{{N}}_{_Lambda ^3{rm{H}}}}/{{{N}}_Lambda }}}{{{{{N}}_{^3{rm{He}}}}/{{{N}}_{{p}}}}}$?> measured in Au+Au collisions at <?CDATA $rm sqrt{s_{NN}}$?> = 200 GeV and in Pb-Pb collisions at <?CDATA $rm sqrt{s_{NN}}$?> = 2.76 TeV is mainly owing to the different treatment of the weak decay contribution to the proton yield in the Au+Au collisions at <?CDATA $rm sqrt{s_{NN}}$?> = 200 GeV. We then use the coalescence model to extract from measured <?CDATA $rm S_3$?> the information about the <?CDATA $Lambda$?> and nucleon density fluctuations at the kinetic freeze-out of heavy-ion collisions. We also show, using available experimental data, that the yield ratio <?CDATA ${{{S}}_{rm{2}}} = dfrac{{{{{N}}_{_Lambda ^3{rm{H}}}}}}{{{{{N}}_Lambda }{{{N}}_{{d}}}}}$?> is a more promising observable than <?CDATA $rm S_3$?> for probing the local baryon-strangeness correlation in the produced medium." @default.
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- W3014867029 date "2020-11-01" @default.
- W3014867029 modified "2023-09-25" @default.
- W3014867029 title "Yield ratio of hypertriton to light nuclei in heavy-ion collisions from = 4.9 GeV to 2.76 TeV *" @default.
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- W3014867029 doi "https://doi.org/10.1088/1674-1137/abadf0" @default.
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