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Measurement of an excess of<mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML" display="inline"><mml:mover accent="true"><mml:mi>B</mml:mi><mml:mo>¯</mml:mo></mml:mover><mml:mo>→</mml:mo><mml:msup><mml:mi>D</mml:mi><mml:mrow><mml:mo mathvariant="bold" stretchy="false">(</mml:mo><mml:mo>*</mml:mo><mml:mo mathvariant="bold" stretchy="false">)</mml:mo></mml:mrow></mml:msup><mml:msup><mml:mi>τ</mml:mi><mml:mo mathvariant="bold">−</mml:mo></mml:msup><mml:msub><mml:mover accent="true"><mml:mi>ν</mml:mi><mml:mo>¯</mml:mo></mml:mover><mml:mi>τ</mml:mi></mml:msub></mml:math>decays and implications for charged Higgs bosons

J. P. LeesV. PoireauV. TisserandE. GraugésA. PalanoG. EigenB. StuguD. N. BrownL. T. KerthYu. G. KolomenskyM. LeeG. LynchH. KochT. Vazquez SchroederC. HeartyT. S. MattisonJ. A. McKennaR. Y. SoA. KhanV. E. BlinovА. Р. БузыкаевВ. П. ДружининВ. Б. ГолубевE. A. KravchenkoA. P. OnuchinS. I. SerednyakovYu. I. SkovpenE. P. SolodovK. Yu. TodyshevA. N. YushkovD. KirkbyA. J. LankfordM. MandelkernB. DeyJ. W. GaryO. LongG. M. VitugC. CampagnariM. Franco SevillaT. M. HongD. KovalskyiJ. D. RichmanChristopher WestA. M. EisnerW. S. LockmanA. J. MartínezB. A. SchummA. SeidenD. S. ChaoC. H. ChengB. EchenardK. T. FloodD. G. HitlinP. OngmongkolkulF. C. PorterR. AndreassenZ. HuardJ. V. MeadM. D. SokoloffL. SunP. C. BloomW. T. FordA. GazU. NauenbergJ. G. SmithS. R. WagnerR. AyadW. H. TokiB. SpaanK. R. SchubertR. SchwierzD. BernardM. VerderiS. PlayferD. BettoniC. BozziR. CalabreseG. CibinettoE. FioravantiI. GarziaE. LuppiL. PiemonteseV. SantoroR. Baldini-FerroliA. CalcaterraR. de SangroG. FinocchiaroS. MartellottiP. PatteriI. M. PeruzziM. PiccoloM. RamaA. ZalloR. ContriE. GuidoM. Lo VetereM. R. MongeS. PassaggioC. PatrignaniE. RobuttiB. BhuyanV. PrasadM. MoriiA. AdametzU. UwerH. LackerP. D. DaunceyU. MallikC. ChenJ. CochranW. T. MeyerS. PrellA. E. RubinA. V. GritsanN. ArnaudM. DavierД. ДеркачG. GrosdidierF. Le DiberderA. M. LutzB. MalaescuP. RoudeauA. StocchiG. WormserD. J. LangeD. WrightJ. P. ColemanJ. R. FryE. GabathulerD. HutchcroftD. J. PayneC. TouramanisA. J. BevanF. Di LodovicoR. SaccoG. CowanJ. BougherD. N. BrownC. L. DavisA. G. DenigM. FritschW. GradlK. GriessingerA. HafnerE. PrencipeR. J. BarlowG. LaffertyE. BehnR. CenciB. HamiltonA. JawaheryD. A. RobertsR. CowanD. DujmicG. SciollaR. CheaibP. M. PatelS. H. RobertsonP. BiassoniN. NériF. PalomboL. CremaldiR. GodangP. SonnekD. J. SummersX. NguyenM. SimardP. TarasG. De NardoD. MonorchioG. OnoratoC. SciaccaM. MartinelliG. RavenC. P. JessopJ. M. LoSeccoK. HonscheidR. KassJ. BrauR. FreyN. B. SinevD. StromE. TorrenceE. FeltresiM. MargoniM. MorandinM. PosoccoM. RotondoG. SimiF. SimonettoR. StroiliS. AkarE. Ben-HaimM. BombenG. R. BonneaudH. BriandG. CalderiniJ. ChauveauPh. LerusteG. MarchioriJ. OcarizS. SittM. BiasiniE. ManoniS. PacettiA. RossiC. AngeliniG. BatignaniS. BettariniM. CarpinelliG. CasarosaA. CervelliF. FortiM. A. GiorgiA. LusianiB. OberhofE. PaoloniA. PérezG. RizzoJ. WalshD. Lopes PegnaJ. OlsenA. J. S. SmithR. FacciniF. FerrarottoF. FerroniM. GasperoL. Li GioiG. PireddaCody BüngerO. GrünbergT. HartmannT. LeddigC. VoßR. WaldiT. AdyeE. O. OlaiyaF. F. WilsonS. EmeryG. Hamel de MonchenaultG. VasseurCh. YècheF. AnulliD. AstonD. J. BardJ. F. BenitezC. CartaroM. R. ConveryJ. DorfanG. P. Dubois-FelsmannW. DunwoodieM. EbertR. C. FieldB. G. FulsomA. M. GabareenM. T. GrahamC. HastW. R. InnesP. KimM. L. KocianD. W. G. S. LeithP. LewisD. LindemannB. LindquistS. LuitzV. LüthH. L. LynchD. B. MacFarlaneD. R. MullerH. NealS. NelsonM. PerlT. PulliamB. N. RatcliffA. RoodmanA. A. SalnikovR. H. SchindlerA. SnyderD. SuM. K. SullivanJ. Va’vraA. WagnerW. F. WangW. J. WisniewskiM. WittgenD. H. WrightH. W. WulsinV. ZieglerW. ParkM. V. PurohitR. M. WhiteR. J. WilsonA. Randle-CondeS. J. SekulaM. BellisP. R. BurchatT. S. MiyashitaE. M. T. PuccioM. S. AlamJ. ErnstR. GorodeiskyN. GuttmanD. R. PeimerA. SofferS. M. SpanierJ. L. RitchieA. M. RulandR. F. SchwittersB. C. WrayJ. M. IzenX. C. LouF. BianchiF. De MoriA. FilippiD. GambaS. ZambitoL. LanceriL. VitaleF. Martínez-VidalA. OyangurenP. Villanueva-PérezH. AhmedJ. AlbertSw. BanerjeeF. U. BernlochnerH. H. F. ChoiG. J. KingR. KowalewskiM. J. LewczukT. LueckI. M. NugentJ. M. RoneyR. J. SobieN. TasneemT. J. GershonP. F. HarrisonT. LathamH. R. BandS. DasuY. PanR. PrepostS. L. Wu

Abstract

Based on the full BABAR data sample, we report improved measurements of the ratios $\mathcal{R}(D)=\mathcal{B}(\overline{B}\ensuremath{\rightarrow}D{\ensuremath{\tau}}^{\ensuremath{-}}{\overline{\ensuremath{\nu}}}_{\ensuremath{\tau}})/\mathcal{B}(\overline{B}\ensuremath{\rightarrow}D{\ensuremath{\ell}}^{\ensuremath{-}}{\overline{\ensuremath{\nu}}}_{\ensuremath{\ell}})$ and $\mathcal{R}({D}^{*})=\mathcal{B}(\overline{B}\ensuremath{\rightarrow}{D}^{*}{\ensuremath{\tau}}^{\ensuremath{-}}{\overline{\ensuremath{\nu}}}_{\ensuremath{\tau}})/\mathcal{B}(\overline{B}\ensuremath{\rightarrow}{D}^{*}{\ensuremath{\ell}}^{\ensuremath{-}}{\overline{\ensuremath{\nu}}}_{\ensuremath{\ell}})$, where $\ensuremath{\ell}$ refers to either an electron or muon. These ratios are sensitive to new physics contributions in the form of a charged Higgs boson. We measure $\mathcal{R}(D)=0.440\ifmmode\pm\else\textpm\fi{}0.058\ifmmode\pm\else\textpm\fi{}0.042$ and $\mathcal{R}({D}^{*})=0.332\ifmmode\pm\else\textpm\fi{}0.024\ifmmode\pm\else\textpm\fi{}0.018$, which exceed the standard model expectations by $2.0\ensuremath{\sigma}$ and $2.7\ensuremath{\sigma}$, respectively. Taken together, the results disagree with these expectations at the $3.4\ensuremath{\sigma}$ level. This excess cannot be explained by a charged Higgs boson in the type II two-Higgs-doublet model. Kinematic distributions presented here exclude large portions of the more general type III two-Higgs-doublet model, but there are solutions within this model compatible with the results.

Particle physics theoretical and experimental studiesQuantum Chromodynamics and Particle InteractionsHigh-Energy Particle Collisions ResearchHiggs bosonParticle physicsPhysicsType (biology)Standard Model (mathematical formulation)Analytical Chemistry (journal)ChemistryMaterials science

Funding

  • National Science Foundation
  • U.S. Department of Energy
  • Alfred P. Sloan Foundation
  • European Commission
  • Deutsche Forschungsgemeinschaft
  • Ministry of Education and Science of the Russian Federation
  • Norges Forskningsråd
  • Istituto Nazionale di Fisica Nucleare
  • Science and Technology Facilities Council
  • SLAC National Accelerator Laboratory
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