Preprint PUBDB-2022-07457

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Single-differential top quark pair production cross sections with running mass schemes at NLO

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2022

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Report No.: arXiv:2211.13607

Abstract: Single-differential cross section predictions for top quark pair production are presented at next-to-leading order, using running top quark mass renormalization schemes. The evolution of the mass of the top quark is performed in the MSR scheme $m_\mathrm{t}^{\textrm{MSR}}(\mu)$ for renormalization scales $\mu$ below the $\overline{\textrm{MS}}$ top quark mass $\overline{m}_\mathrm{t}(\overline{m}_\mathrm{t})$, and in the $\overline{\textrm{MS}}$ scheme $\overline{m}_\mathrm{t}(\mu)$ for scales above. In particular, the implementation of a mass renormalization scale independent of the strong coupling renormalization scale and factorization scale in quantum chromodynamics allows investigating independent dynamical scale variations. Furthermore, the first theoretically consistent extraction of the top quark MSR mass from experimental data is presented.

Keyword(s): top: mass ; scale: renormalization ; top: pair production ; mass: renormalization ; scale: factorization ; higher-order: 1 ; quantum chromodynamics ; strong coupling


Note: To appear in the Proceedings of the 41st International Conference on High Energy physics - ICHEP2022, Bologna, Italy, 6-13 July, 2022

Contributing Institute(s):
  1. LHC/CMS Experiment (CMS)
Research Program(s):
  1. 611 - Fundamental Particles and Forces (POF4-611) (POF4-611)
Experiment(s):
  1. No specific instrument

Appears in the scientific report 2022
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Single-differential top quark pair production cross sections with running mass schemes at NLO
41st International Conference on High Energy Physics, ICHEP2022, BolognaBologna, Italy, 6 Jul 2022 - 13 Jul 20222022-07-062022-07-13 Proceedings of Science / International School for Advanced Studies (ICHEP2022), 1069 () [10.22323/1.414.1069]  GO OpenAccess  Download fulltext Files  Download fulltextFulltext Download fulltextFulltext by arXiv.org BibTeX | EndNote: XML, Text | RIS


 Record created 2022-12-09, last modified 2023-02-14


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