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Identification of b-quark jets with the CMS experiment

Khachatryan, VardanA.Alikhanian Yerevan Institute of PhysicsSirunyan, Albert MA.Alikhanian Yerevan Institute of PhysicsTumasyan, ArmenA.Alikhanian Yerevan Institute of PhysicsAdam, WolfgangAustrian Academy of SciencesAguilo, ErnestAustrian Academy of SciencesBergauer, ThomasAustrian Academy of SciencesDragicevic, MarkoAustrian Academy of SciencesErö, JanosAustrian Academy of SciencesFabjan, ChristianAustrian Academy of SciencesM. FriedlAustrian Academy of SciencesFruehwirth, RudolfVienna University of TechnologyGhete, Vasile MihaiAustrian Academy of SciencesHammer, JosefAustrian Academy of SciencesHörmann, NataschaAustrian Academy of SciencesHrubec, JosefAustrian Academy of SciencesJeitler, ManfredAustrian Academy of SciencesKiesenhofer, WolfgangAustrian Academy of SciencesKnünz, ValentinAustrian Academy of SciencesKrammer, ManfredAustrian Academy of SciencesKrätschmer, IlseAustrian Academy of SciencesLiko, DietrichMikulec, IvanPernicka, ManfredRahbaran, BabakRohringer, ChristineRohringer, HerbertSchöfbeck, RobertStrauss, JosefTaurok, AntonWaltenberger, WolfgangWalzel, GerhardWidl, EdmundWulz, Claudia-ElisabethMossolov, VladimirShumeiko, NikolaiSuarez Gonzalez, JuanBansal, MonikaS. B. BeriCornelis, TomDe Wolf, Eddi AJanssen, XavierLuyckx, StenMucibello, LucaOchesanu, SilviaRoland, BenoitRougny, RomainSelvaggi, MicheleStaykova, ZlatkaVan Haevermaet, HansVan Mechelen, PierreVan Remortel, NickVan Spilbeeck, AlexBlekman, FreyaBlyweert, StijnD'Hondt, JorgenGonzalez Suarez, RebecaKalogeropoulos, AlexisMaes, MichaelOlbrechts, AnnikVan Doninck, WalterVan Mulders, PetraG. P. Van OnsemVillella, IlariaClerbaux, BarbaraDe Lentdecker, GillesDero, VincentGay, ArnaudHreus, TomasLéonard, AlexandreMarage, Pierre EdouardMohammadi, AbdollahReis, ThomasThomas, LaurentVander Marcken, GilVander Velde, CatherineVanlaer, PascalWang, JianAdler, VolkerBeernaert, KellyCimmino, AnnaCostantini, SilviaGarcia, GuillaumeGrunewald, MartinKlein, BenjaminLellouch, JérémieMarinov, AndreyMccartin, JosephOcampo Rios, Alberto AndresRyckbosch, DirkStrobbe, NadjaThyssen, FilipTytgat, MichaelVerwilligen, PietWalsh, SineadYazgan, EfeZaganidis, NicolasBasegmez, SuzanBruno, GiacomoCastello, RobertoCeard, Ludivine
2013en
ABI

Annotatsiya

At the Large Hadron Collider, the identification of jets originating from b quarks is important for searches for new physics and for measurements of standard model processes. A variety of algorithms has been developed by CMS to select b-quark jets based on variables such as the impact parameters of charged-particle tracks, the properties of reconstructed decay vertices, and the presence or absence of a lepton, or combinations thereof. The performance of these algorithms has been measured using data from proton-proton collisions at the LHC and compared with expectations based on simulation. The data used in this study were recorded in 2011 at √s = 7 TeV for a total integrated luminosity of 5.0 fb(-1). The efficiency for tagging b-quark jets has been measured in events from multijet and t-quark pair production. CMS has achieved a b-jet tagging efficiency of 85% for a light-parton misidentification probability of 10% in multijet events. For analyses requiring higher purity, a misidentification probability of only 1.5% has been achieved, for a 70% b-jet tagging efficiency. arXiv At the Large Hadron Collider, the identification of jets originating from b quarks is important for searches for new physics and for measurements of standard model processes. A variety of algorithms has been developed by CMS to select b-quark jets based on variables such as the impact parameters of charged-particle tracks, the properties of reconstructed decay vertices, and the presence or absence of a lepton, or combinations thereof. The performance of these algorithms has been measured using data from proton-proton collisions at the LHC and compared with expectations based on simulation. The data used in this study were recorded in 2011 at sqrt(s) = 7 TeV for a total integrated luminosity of 5.0 inverse femtobarns. The efficiency for tagging b-quark jets has been measured in events from multijet and t-quark pair production. CMS has achieved a b-jet tagging efficiency of 85% for a light-parton misidentification probability of 10% in multijet events. For analyses requiring higher purity, a misidentification probability of only 1.5% has been achieved, for a 70% b-jet tagging efficiency.

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