3.8 Article

Selection and processing of calibration samples to measure the particle identification performance of the LHCb experiment in Run 2

期刊

出版社

SPRINGER
DOI: 10.1140/epjti/s40485-019-0050-z

关键词

Experimental methods and data analysis methods; Data acquisition; Data analysis methods

资金

  1. CERN
  2. European Organization for Nuclear Research (Switzerland)
  3. Istituto Nazionale di Fisica Nucleare (INFN)
  4. Nederlandse Organisatie voor Wetenschappelijk Onderzoek (NWO)
  5. SURF
  6. Collaborative organisation for ICT in Dutch higher education and research
  7. Conseil General de Haute-Savoie
  8. ANR. Agence Nationale de la Recherche
  9. Labex P2IO
  10. Physique des 2 Infinis et des Origines
  11. Labxx ENIGMASS
  12. L'enigme de la Masse
  13. Labex OCEVU
  14. Origine Constituants et Evolution de l'Univers
  15. Region Auvergne-Rhone-Alpes
  16. Herchel Smith Fund
  17. Royal Society
  18. Royal Commission for the Exhibition of 1851
  19. English-Speaking Union
  20. Leverhulme Trust
  21. Generalitat de Catalunya
  22. PIC, Port d'Informacio Cientifica
  23. STFC [LHCb, ST/L003163/1, 1708182, ST/S000909/1, ST/N000455/1] Funding Source: UKRI

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Since 2015, with the restart of the LHC for its second run of data taking, the LHCb experiment has been empowered with a dedicated computing model to select and analyse calibration samples to measure the performance of the particle identification (PID) detectors and algorithms. The novel technique was developed within the framework of the innovative trigger model of the LHCb experiment, which relies on online event reconstruction for most of the datasets, reserving offline reconstruction to special physics cases. The strategy to select and process the calibration samples, which includes a dedicated data-processing scheme combining online and offline reconstruction, is discussed. The use of the calibration samples to measure the detector PID performance, and the efficiency of PID requirements across a large range of decay channels, is described. Applications of the calibration samples in data-quality monitoring and validation procedures are also detailed.

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