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ATLAS B-jet Identification Performance and Efficiency Measurement with Tt[over-bar] Events in Pp Collisions at [square Root]s
ATLAS Collaboration CERN
Fabian Becherer
Anne Kathrin Becker
Elias Coniavitis
Carlos García-Argos
Simona Gargiulo
Giulia Gonella
Ralf Gugel
Kim K. Heidegger
Gregor Herten
Minoru Hirose
David Hohn
Karl Jakobs
Martina Javůrková
Peter Jenni
Stephen Jiggins
Thorwald Klapdor-Kleingrothaus
Andrea Knue
Karsten Köneke
Oleg Kuprash
Ulrich Landgraf
Alena Lösle
Christian Lüdtke
Veronika Magerl
Théo Megy
Philipp Mogg
M. Nagel
Ulrich Parzefall
Kilian Rosbach
Frederik Rühr
Zuzana Rúriková
Dirk Sammel
Frank Sauerburger
Katharina E. Schleicher
Ulrike Schnoor
Patrick Scholer
Markus Schumacher
Dennis Sperlich
Christian Weiser
Liv Wiik-Fuchs
Benedict T. Winter
Julian Wollrath
Stephanie Zimmermann
et al
出版
Universität
, 2019
URL
http://books.google.com.hk/books?id=xwu3zwEACAAJ&hl=&source=gbs_api
註釋
Abstract: The algorithms used by the ATLAS Collaboration during Run 2 of the Large Hadron Collider to identify jets containing b-hadrons are presented. The performance of the algorithms is evaluated in the simulation and the efficiency with which these algorithms identify jets containing b-hadrons is measured in collision data. The measurement uses a likelihood-based method in a sample highly enriched in tt ̄ events. The topology of the t→Wb decays is exploited to simultaneously measure both the jet flavour composition of the sample and the efficiency in a transverse momentum range from 20 to 600 GeV. The efficiency measurement is subsequently compared with that predicted by the simulation. The data used in this measurement, corresponding to a total integrated luminosity of 80.5 fb−1, were collected in proton-proton collisions during the years 2015-2017 at a centre-of-mass energy s√= 13 TeV. By simultaneously extracting both the efficiency and jet flavour composition, this measurement significantly improves the precision compared to previous results, with uncertainties ranging from 1 to 8% depending on the jet transverse momentum