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. 2004 Jun 10;429(6992):638-42.
doi: 10.1038/nature02589.

A precision measurement of the mass of the top quark

V M Abazov  1 B AbbottA AbdesselamM AbolinsV AbramovB S AcharyaD L AdamsM AdamsS N AhmedG D AlexeevA AltonG A AlvesY ArnoudC AvilaV V BabintsevL BabukhadiaT C BaconA BadenS BaffioniB BaldinP W BalmS BanerjeeE BarberisP BaringerJ BarretoJ F BartlettU BasslerD BauerA BeanF BeaudetteM BegelA BelyaevS B BeriG BernardiI BertramA BessonR BeuselinckV A BezzubovP C BhatV BhatnagarM BhattacharjeeG BlazeyF BlekmanS BlessingA BoehnleinN I BojkoT A BoltonF BorcherdingK BosT BoseA BrandtG BriskinR BrockG BrooijmansA BrossD BuchholzM BuehlerV BuescherV S BurtovoiJ M ButlerF CanelliW CarvalhoD CaseyH Castilla-ValdezD ChakrabortyK M ChanS V ChekulaevD K ChoS ChoiS ChopraD ClaesA R ClarkB ConnollyW E CooperD CoppageS Crépé-RenaudinM A C CummingsD CuttsH Da MottaG A DavisK DeS J De JongM DemarteauR DeminaP DemineD DenisovS P DenisovS DesaiH T DiehlM DiesburgS DoulasL V DudkoL DuflotS R DugadA DuperrinA DyshkantD EdmundsJ EllisonJ T EltzrothV D ElviraR EngelmannS EnoG EppleyP ErmolovO V EroshinJ EstradaH EvansV N EvdokimovT FerbelF FilthautH E FiskM FortnerH FoxS FuS FuessE GallasA N GalyaevM GaoV GavrilovR J Genik 2ndK GenserC E GerberY GershteinG GintherB GómezP I GoncharovK GounderA GoussiouP D GrannisH GreenleeZ D GreenwoodS GrinsteinL GroerS GrünendahlM W GrünewaldS N GurzhievG GutierrezP GutierrezN J HadleyH HaggertyS HagopianV HagopianR E HallC HanS HansenJ M HauptmanC HebertD HedinJ M HeinmillerA P HeinsonU HeintzM D HildrethR HiroskyJ D HobbsB HoeneisenJ HuangY HuangI IashviliR IllingworthA S ItoM JaffréS JainR JesikK JohnsM JohnsonA JonckheereH JöstleinA JusteW KahlS KahnE KajfaszA M KalininD KarmanovD KarmgardR KehoeS KesisoglouA KhanovA KharchilavaB KlimaJ M KohliA V KostritskiyJ KotcherB KothariA V KozelovE A KozlovskyJ KraneM R KrishnaswamyP KrivkovaS KrzywdzinskiM KubantsevS KuleshovY KulikS KunoriA KupcoV E KuznetsovG LandsbergW M LeeA LeflatF LehnerC LeonidopoulosJ LiQ Z LiJ G R LimaD LincolnS L LinnJ LinnemannR LiptonA LucotteL LuekingC LundstedtC LuoA K A MacielR J MadarasV L MalyshevV ManankovH S MaoT MarshallM I MartinS E K MattinglyA A MayorovR McCarthyT McMahonH L MelansonA MelnitchoukA MerkinK W MerrittC MiaoH MiettinenD MihalceaN MokhovN K MondalH E MontgomeryR W MooreY D MutafE NagyM NarainV S NarasimhamN A NaumannH A NealJ P NegretS NelsonA NomerotskiT NunnemannD O'NeilV OguriN OshimaP PadleyK PapageorgiouN ParasharR PartridgeN ParuaA PatwaO PetersP PétroffR PiegaiaB G PopeH B ProsperS ProtopopescuM B PrzybycienJ QianS RajagopalanP A RapidisN W ReayS ReucroftM RidelM RijssenbeekF RizatdinovaT RockwellC RoyonP RubinovR RuchtiB M SabirovG SajotA SantoroL SawyerR D SchambergerH SchellmanA SchwartzmanE ShabalinaR K ShivpuriD ShpakovM ShupeR A SidwellV SimakV SirotenkoP SlatteryR P SmithG R SnowJ SnowS SnyderJ SolomonY SongV SorínM SosebeeN SotnikovaK SoustruznikM SouzaN R StantonG SteinbrückD StokerV StolinA StoneD A StoyanovaM A StrangM StraussM StrovinkL StutteA SznajderM TalbyW TaylorS Tentindo-RepondT G TrippeA S TurcotP M TutsR Van KootenV VanievN VarelasF Villeneuve-SeguierA A VolkovA P VorobievH D WahlZ-M WangJ WarcholG WattsM WayneH WeertsA WhiteD WhitesonD A WijngaardenS WillisS J WimpennyJ WomersleyD R WoodQ XuR YamadaT YasudaY A YatsunenkoK YipJ YuM ZanabriaX ZhangB ZhouZ ZhouM ZielinskiD ZieminskaA ZieminskiV ZutshiE G ZverevA ZylberstejnDØ Collaboration
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A precision measurement of the mass of the top quark

V M Abazov et al. Nature. .
Free article

Abstract

The standard model of particle physics contains parameters--such as particle masses--whose origins are still unknown and which cannot be predicted, but whose values are constrained through their interactions. In particular, the masses of the top quark (M(t)) and W boson (M(W)) constrain the mass of the long-hypothesized, but thus far not observed, Higgs boson. A precise measurement of M(t) can therefore indicate where to look for the Higgs, and indeed whether the hypothesis of a standard model Higgs is consistent with experimental data. As top quarks are produced in pairs and decay in only about 10(-24) s into various final states, reconstructing their masses from their decay products is very challenging. Here we report a technique that extracts more information from each top-quark event and yields a greatly improved precision (of +/- 5.3 GeV/c2) when compared to previous measurements. When our new result is combined with our published measurement in a complementary decay mode and with the only other measurements available, the new world average for M(t) becomes 178.0 +/- 4.3 GeV/c2. As a result, the most likely Higgs mass increases from the experimentally excluded value of 96 to 117 GeV/c2, which is beyond current experimental sensitivity. The upper limit on the Higgs mass at the 95% confidence level is raised from 219 to 251 GeV/c2.

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