Identification of heavy-flavour jets with the CMS detector in pp collisions at 13 TeV
- A. M. Sirunyan
- A. Tumasyan
- W. Adam
- F. Ambrogi
- E. Asilar
- T. Bergauer
- J. Brandstetter
- E. Brondolin
- M. Dragicevic
- J. Erö
- A. Escalante Del Valle
- M. Flechl
- M. Friedl
- Rudolf Konrad Fruhwirth
- V. M. Ghete
- J. Grossmann
- J. Hrubec
- M. Jeitler
- A. König
- Natascha Krammer
- Ilse Krätschmer
- D. Liko
- T. Madlener
- I. Mikulec
- E. Pree
- Navid K. Rad
- H. Rohringer
- J. Schieck
- R. Schöfbeck
- M. Spanring
- D. Spitzbart
- W. Waltenberger
- J. Wittmann
- C.-E. Wulz
- M. Zarucki
- V. Chekhovsky
- V. Mossolov
- J. Suarez Gonzalez
- E. A. De Wolf
- D. Di Croce
- X. Janssen
- J. Lauwers
- M. Van De Klundert
- H. Van Haevermaet
- P. Van Mechelen
- N. Van Remortel
- S. Abu Zeid
- F. Blekman
- J. D’Hondt
- I. De Bruyn
- J. De Clercq
- Kevin Deroover
- G. Flouris
- D. Lontkovskyi
- S. Lowette
- I. Marchesini
- S. Moortgat
- L. Moreels
- Q. Python
- K. Skovpen
- S. Tavernier
- W. Van Doninck
- P. Van Mulders
- Isis Van Parijs
- D. Beghin
- B. Bilin
- H. Brun
- B. Clerbaux
- G. De Lentdecker
- H. Delannoy
- B. Dorney
- Giuseppe Fasanella
- L. Favart
- R. Goldouzian
- A. Grebenyuk
- T. Lenzi
- J. Luetic
- T. Maerschalk
- A. Marinov
- T. Ševa
- Elizabeth Rose Starling
- C. Vander Velde
- Pascal Vanlaer
- David Vannerom
- R. Yonamine
- F. Zenoni
- F. Zhang
- A. Cimmino
- T. Cornelis
- D. Dobur
- A. Fagot
- M. Gul
- I. Khvastunov
- Dursen Deniz Poyraz
- C. Roskas
- S. Salva
- M. Tytgat
- W. Verbeke
- Nikolaos Zaganidis
- H. Bakhshiansohi
- JKJ. Keaveney
- PBP. K. Behera
Journal of Instrumentation · 2018 · Institute of Physics
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Abstract
Many measurements and searches for physics beyond the standard model at the LHC rely on the efficient identification of heavy-flavour jets, i.e. jets originating from bottom or charm quarks. In this paper, the discriminating variables and the algorithms used for heavy-flavour jet identification during the first years of operation of the CMS experiment in proton-proton collisions at a centre-of-mass energy of 13 TeV, are presented. Heavy-flavour jet identification algorithms have been improved compared to those used previously at centre-of-mass energies of 7 and 8 TeV. For jets with transverse momenta in the range expected in simulated $\mathrm{t}\overline{\mathrm{t}}$ events, these new developments result in an efficiency of 68% for the correct identification of a b jet for a probability of 1% of misidentifying a light-flavour jet. The improvement in relative efficiency at this misidentification probability is about 15%, compared to previous CMS algorithms. In addition, for the first time algorithms have been developed to identify jets containing two b hadrons in Lorentz-boosted event topologies, as well as to tag c jets. The large data sample recorded in 2016 at a centre-of-mass energy of 13 TeV has also allowed the development of new methods to measure the efficiency and misidentification probability of heavy-flavour jet identification algorithms. The heavy-flavour jet identification efficiency is measured with a precision of a few per cent at moderate jet transverse momenta (between 30 and 300 GeV) and about 5% at the highest jet transverse momenta (between 500 and 1000 GeV).
