Evolution of strange and multi-strange hadron production with relative transverse multiplicity activity in underlying event
Autor: | Arvind Khuntia, Paolo Bartalini, Prabhakar Palni |
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Jazyk: | angličtina |
Rok vydání: | 2020 |
Předmět: |
Computer Science::Machine Learning
Strange quark Particle physics Nuclear Theory Physics and Astronomy (miscellaneous) Meson Hadron FOS: Physical sciences lcsh:Astrophysics Computer Science::Digital Libraries Nuclear Theory (nucl-th) Statistics::Machine Learning High Energy Physics - Phenomenology (hep-ph) lcsh:QB460-466 lcsh:Nuclear and particle physics. Atomic energy. Radioactivity Nuclear Experiment Engineering (miscellaneous) Quantum chromodynamics Physics High Energy Physics::Phenomenology Hadronization Baryon High Energy Physics - Phenomenology Content (measure theory) Computer Science::Mathematical Software lcsh:QC770-798 Production (computer science) High Energy Physics::Experiment |
Zdroj: | European Physical Journal C: Particles and Fields, Vol 80, Iss 10, Pp 1-7 (2020) European Physical Journal |
ISSN: | 1434-6052 1434-6044 |
Popis: | In this work, the relative Underlying event (UE) transverse multiplicity activity classifier ($$R_\mathrm{{T}}$$ R T ) is used to study the strange and multi-strange hadron production in proton-proton collisions. Our study with $$R_\mathrm{{T}}$$ R T would allow to disentangle these particles, which are originating from the soft and hard QCD processes. We have used the PYTHIA 8 Monte-Carlo (MC) with a different implementation of color reconnection and rope hadronization models to demonstrate the proton-proton collisions data at $$\sqrt{s}~$$ s = 13 TeV. The relative production of strange and multi-strange hadrons are discussed extensively in low and high transverse activity regions. In this contribution, the relative strange hadron production is enhanced with increasing $$R_\mathrm{{T}}$$ R T . This enhancement is significant for the strange baryons as compared to mesons. In addition, the particle ratios as a function of $$R_\mathrm{{T}}~$$ R T confirm the baryon enhancement in new Color Reconnection (newCR), whereas the Rope model confirms the baryon enhancement only with strange quark content. Experimental confirmation of such results will provide more insight into the soft physics in the transverse region, which will be useful to investigate various tunes based on hadronization and color reconnection schemes. |
Databáze: | OpenAIRE |
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