6533b871fe1ef96bd12d2211
RESEARCH PRODUCT
Search for single production of scalar leptoquarks in pp¯ collisions decaying into muons and quarks with the D0 detector
V.m. AbazovB. AbbottM. AbolinsB.s. AcharyaM. AdamsT. AdamsE. AguiloS.h. AhnM. AhsanG.d. AlexeevG. AlkhazovA. AltonG. AlversonG.a. AlvesM. AnastasoaieL.s. AncuT. AndeenS. AndersonB. AndrieuM.s. AnzelcY. ArnoudM. ArovA. AskewB. ÅSmanA.c.s. Assis JesusO. AtramentovC. AutermannC. AvilaC. AyF. BadaudA. BadenL. BagbyB. BaldinD.v. BandurinP. BanerjeeS. BanerjeeE. BarberisP. BargassaP. BaringerC. BarnesJ. BarretoJ.f. BartlettU. BasslerD. BauerS. BealeA. BeanM. BegalliM. BegelC. Belanger-champagneL. BellantoniA. BellavanceJ.a. BenitezS.b. BeriG. BernardiR. BernhardL. BerntzonI. BertramM. BesançonR. BeuselinckV.a. BezzubovP.c. BhatV. BhatnagarM. BinderC. BiscaratI. BlacklerG. BlazeyF. BlekmanS. BlessingD. BlochK. BloomA. BoehnleinD. BolineT.a. BoltonG. BorissovK. BosT. BoseA. BrandtR. BrockG. BrooijmansA. BrossD. BrownN.j. BuchananD. BuchholzM. BuehlerV. BuescherS. BurdinS. BurkeT.h. BurnettE. BusatoC.p. BuszelloJ.m. ButlerP. CalfayanS. CalvetJ. CamminS. CaronW. CarvalhoB.c.k. CaseyN.m. CasonH. Castilla-valdezS. ChakrabartiD. ChakrabortyK.m. ChanA. ChandraF. CharlesE. CheuF. ChevallierD.k. ChoS. ChoiB. ChoudharyT. ChristiansenL. ChristofekD. ClaesB. ClémentC. ClémentY. CoadouM. CookeW.e. CooperM. CorcoranF. CoudercM.-c. CousinouB. CoxS. Crépé-renaudinD. CuttsM. ĆWiokH. Da MottaA. DasM. DasB. DaviesG. DaviesK. DeP. De JongS.j. De JongE. De La Cruz-bureloC. De Oliveira MartinsJ.d. DegenhardtF. DéliotM. DemarteauR. DeminaD. DenisovS.p. DenisovS. DesaiH.t. DiehlM. DiesburgM. DoidgeA. DominguezH. DongL.v. DudkoL. DuflotS.r. DugadD. DugganA. DuperrinJ. DyerA. DyshkantM. EadsD. EdmundsJ. EllisonV.d. ElviraY. EnariS. EnoP. ErmolovH. EvansA. EvdokimovV.n. EvdokimovL. FeligioniA.v. FerapontovT. FerbelF. FiedlerF. FilthautW. FisherH.e. FiskM. FordM. FortnerH. FoxS. FuS. FuessT. GadfortC.f. GaleaE. GallasE. GalyaevC. GarciaA. Garcia-bellidoV. GavrilovA. GayP. GayW. GeistD. GeléR. GelhausC.e. GerberY. GershteinD. GillbergG. GintherN. GollubB. GómezA. GoussiouP.d. GrannisH. GreenleeZ.d. GreenwoodE.m. GregoresG. GrenierPh. GrisJ.-f. GrivazA. GrohsjeanS. GrünendahlM.w. GrünewaldF. GuoJ. GuoG. GutierrezP. GutierrezA. HaasN.j. HadleyP. HaefnerS. HagopianJ. HaleyI. HallR.e. HallL. HanK. HanagakiP. HanssonK. HarderA. HarelR. HarringtonJ.m. HauptmanR. HauserJ. HaysT. HebbekerD. HedinJ.g. HegemanJ.m. HeinmillerA.p. HeinsonU. HeintzC. HenselK. HernerG. HeskethM.d. HildrethR. HiroskyJ.d. HobbsB. HoeneisenH. HoethM. HohlfeldS.j. HongR. HooperP. HoubenY. HuZ. HubacekV. HynekI. IashviliR. IllingworthA.s. ItoS. JabeenM. JaffréS. JainK. JakobsC. JarvisA. JenkinsR. JesikK. JohnsC. JohnsonM. JohnsonA. JonckheereP. JonssonA. JusteD. KäferS. KahnE. KajfaszA.m. KalininJ.m. KalkJ.r. KalkS. KapplerD. KarmanovJ. KasperP. KasperI. KatsanosD. KauR. KaurR. KehoeS. KermicheN. KhalatyanA. KhanovA. KharchilavaY.m. KharzheevD. KhatidzeH. KimT.j. KimM.h. KirbyB. KlimaJ.m. KohliJ.-p. KonrathM. KopalV.m. KorablevJ. KotcherB. KothariA. KoubarovskyA.v. KozelovD. KropA. KryemadhiT. KuhlA. KumarS. KunoriA. KupcoT. KurčaJ. KvitaD. LamS. LammersG. LandsbergJ. LazofloresA.-c. Le BihanP. LebrunW.m. LeeA. LeflatF. LehnerV. LesneJ. LevequeP. LewisJ. LiL. LiQ.z. LiS.m. LiettiJ.g.r. LimaD. LincolnJ. LinnemannV.v. LipaevR. LiptonZ. LiuL. LoboA. LobodenkoM. LokajicekA. LounisP. LoveH.j. LubattiM. LynkerA.l. LyonA.k.a. MacielR.j. MadarasP. MättigC. MagassA. MagerkurthN. MakovecP.k. MalH.b. MalbouissonS. MalikV.l. MalyshevH.s. MaoY. MaravinR. MccarthyA. MelnitchoukA. MendesL. MendozaP.g. MercadanteM. MerkinK.w. MerrittA. MeyerJ. MeyerM. MichautH. MiettinenT. MilletJ. MitrevskiJ. MolinaR.k. MommsenN.k. MondalJ. MonkR.w. MooreT. MoulikG.s. MuanzaM. MuldersM. MulhearnO. MundalL. MundimE. NagyM. NaimuddinM. NarainN.a. NaumannH.a. NealJ.p. NegretP. NeustroevC. NoedingA. NomerotskiS.f. NovaesT. NunnemannV. O'dellD.c. O'neilG. ObrantC. OchandoV. OguriN. OliveiraD. OnoprienkoN. OshimaJ. OstaR. OtecG.j. Otero Y GarzónM. OwenP. PadleyM. PangilinanN. ParasharS.-j. ParkS.k. ParkJ. ParsonsR. PartridgeN. ParuaA. PatwaG. PawloskiP.m. PereaK. PetersY. PetersP. PétroffM. PetteniR. PiegaiaJ. PiperM.-a. PleierP.l.m. Podesta-lermaV.m. PodstavkovY. PogorelovM.-e. PolA. PompošB.g. PopeA.v. PopovC. PotterW.l. Prado Da SilvaH.b. ProsperS. ProtopopescuJ. QianA. QuadtB. QuinnM.s. RangelK.j. RaniK. RanjanP.n. RatoffP. RenkelS. ReucroftM. RijssenbeekI. Ripp-baudotF. RizatdinovaS. RobinsonR.f. RodriguesC. RoyonP. RubinovR. RuchtiG. SajotA. Sánchez-hernándezM.p. SandersA. SantoroG. SavageL. SawyerT. ScanlonD. SchaileR.d. SchambergerY. ScheglovH. SchellmanP. SchieferdeckerC. SchmittC. SchwanenbergerA. SchwartzmanR. SchwienhorstJ. SekaricS. SenguptaH. SeveriniE. ShabalinaM. ShamimV. SharyA.a. ShchukinR.k. ShivpuriD. ShpakovV. SiccardiR.a. SidwellV. SimakV. SirotenkoP. SkubicP. SlatteryR.p. SmithG.r. SnowJ. SnowS. SnyderS. Söldner-remboldX. SongL. SonnenscheinA. SopczakM. SosebeeK. SoustruznikM. SouzaB. SpurlockJ. StarkJ. SteeleV. StolinA. StoneD.a. StoyanovaJ. StrandbergS. StrandbergM.a. StrangM. StraussR. StröhmerD. StromM. StrovinkL. StutteS. SumowidagdoP. SvoiskyA. SznajderM. TalbyP. TamburelloW. TaylorP. TelfordJ. TempleB. TillerM. TitovV.v. TokmeninM. TomotoT. TooleI. TorchianiT. TrefzgerS. Trincaz-duvoidD. TsybychevB. TuchmingC. TullyP.m. TutsR. UnalanL. UvarovS. UvarovS. UzunyanB. VachonP.j. Van Den BergB. Van EijkR. Van KootenW.m. Van LeeuwenN. VarelasE.w. VarnesA. VartapetianI.a. VasilyevM. VaupelP. VerdierL.s. VertogradovM. VerzocchiF. Villeneuve-seguierP. VintJ.-r. VlimantE. Von ToerneM. VoutilainenM. VreeswijkH.d. WahlL. WangM.h.l.s. WangJ. WarcholG. WattsM. WayneG. WeberM. WeberH. WeertsN. WermesM. WetsteinA. WhiteD. WickeG.w. WilsonS.j. WimpennyM. WobischJ. WomersleyD.r. WoodT.r. WyattY. XieS. YacoobR. YamadaM. YanT. YasudaY.a. YatsunenkoK. YipH.d. YooS.w. YounC. YuJ. YuA. YurkewiczA. ZatserklyaniyC. ZeitnitzD. ZhangT. ZhaoB. ZhouJ. ZhuM. ZielinskiD. ZieminskaA. ZieminskiV. ZutshiE.g. Zverevsubject
PhysicsQuarkNuclear and High Energy PhysicsParticle physicsMuon010308 nuclear & particles physicsBranching fractionHigh Energy Physics::PhenomenologyScalar (mathematics)Lambda01 natural sciencesUpper and lower boundsNuclear physicsPair production0103 physical sciencesHigh Energy Physics::ExperimentLeptoquark010306 general physicsdescription
We report on a search for second generation leptoquarks LQ_2 which decay into a muon plus quark in p\bar{p} collisions at a center-of-mass energy of sqrt{s} = 1.96 TeV in the D0 detector using an integrated luminosity of about 300 pb-1. No evidence for a leptoquark signal is observed and an upper bound on the product of the cross section for single leptoquark production times branching fraction beta into a quark and a muon was determined for second generation scalar leptoquarks as a function of the leptoquark mass. This result has been combined with a previously published D0 search for leptoquark pair production to obtain leptoquark mass limits as a function of the leptoquark-muon-quark coupling, lambda. Assuming lambda=1, lower limits on the mass of a second generation scalar leptoquark are m{LQ_2}>274 GeV and m{LQ_2}>226 GeV for beta=1 and beta=1/2, respectively.
year | journal | country | edition | language |
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2007-04-01 | Physics Letters B |