Modelling $Z\rightarrow\tau\tau$ processes in ATLAS with $\tau$-embedded $Z\rightarrow\mu\mu$ data

Georges Aad,Alexander Kupco,Peter Davison,Samuel Webb, Stephen Sekula, J. Huston,Karl Jakobs,Sara Diglio,Tomoyuki Saito,Martin Spousta,Ryota Yakabe,Marina Cobal,Tatjana Agatonovic-Jovin,Jaroslava Schovancova,Vadim Gratchev,David DeMarco,Paolo Laurelli,Ahmed Bassalat, S. N. White,Marjorie Shapiro,Stephanie Zimmermann,Till Eifert,Nurcan Ozturk,Sinan Kuday,Maximiliano Sioli,Sebastian Lopez,Nello Bruscino,Filippo Maria Giorgi,Steven Robertson,Fernando Monticelli,Andrei Snesarev,L. La Rotonda, Dirk Duschinger,Edson Carquin, M. Martinez,Sabine Crépé-Renaudin,Yury Tikhonov, Mohamad Kassem Ayoub,Lee Tomlinson,David Miller,Paolo Mastrandrea,Santiago Juan Batista,William Axel Leight,Auke-Pieter Colijn,Liaoshan Shi,Karel Cerny, A. Nikiforov,Sky French, J. Ocariz,S. Shushkevich,Andrew Lankford,N. B. Sinev,Stefan Tapprogge, Ole Røhne,Tatsuya Masubuchi,Danilo Enoque Ferreira de Lima,Sai-Juan Chen,Tim Martin,Joaquin Poveda, Eleni Mountricha, Mohamed Ouchrif, H. Khandanyan,Maria Josefina Alconada Verzini,Matthew King,Agnieszka Leyko,Konstantin Toms,Paul Tipton,Alberto Valero, F. Mueller,Tomoe Kishimoto,Armen Vartapetian,Kiyotomo Kawagoe,Adam Edward Barton,Ruth Laura Sandbach,Antonio Policicchio,R Dean Schamberger,Sergey Karpov,Pavol Strizenec,Alexey Antonov,Christopher Lester,M. Stanescu-Bellu,José Enrique García Navarro,Biagio Di Micco,Elena Oliver Garcia,Stefan Koperny,Jonas Strandberg,William S. Lockman,Claudia Bertella,Boris Dolgoshein,Marcel Vos,Evelin Meoni,Tova Ray Holmes,Aungshuman Zaman,Karlheinz Meier,Caterina Doglioni,Wolfgang Ehrenfeld,Alexander Morton,Rachel Reisner Hinman,Alexey Boldyrev,Jacob Searcy

Journal of Instrumentation(2015)

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摘要
This paper describes the concept, technical realisation and validation of a largely data-driven method to model events with Z→ττ decays. In Z→μμ events selected from proton-proton collision data recorded at √s=8 TeV with the ATLAS experiment at the LHC in 2012, the Z decay muons are replaced by τ leptons from simulated Zarrowττ decays at the level of reconstructed tracks and calorimeter cells. The τ lepton kinematics are derived from the kinematics of the original muons. Thus, only the well-understood decays of the Z boson and τ leptons as well as the detector response to the τ decay products are obtained from simulation. All other aspects of the event, such as the Z boson and jet kinematics as well as effects from multiple interactions, are given by the actual data. This so-called τ-embedding method is particularly relevant for Higgs boson searches and analyses in ττ final states, where Zarrowττ decays constitute a large irreducible background that cannot be obtained directly from data control samples. In this paper, the relevant concepts are discussed based on the implementation used in the ATLAS Standard Model H→ττ analysis of the full datataset recorded during 2011 and 2012.
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