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. 2019 Mar 1;122(8):081802.
doi: 10.1103/PhysRevLett.122.081802.

Observation of the Decay D^{0}→K^{-}π^{+}e^{+}e^{-}

J P Lees  1 V Poireau  1 V Tisserand  1 E Grauges  2 A Palano  3 G Eigen  4 D N Brown  5 Yu G Kolomensky  5 M Fritsch  6 H Koch  6 T Schroeder  6 C Hearty  7   8 T S Mattison  8 J A McKenna  8 R Y So  8 V E Blinov  9   10   11 A R Buzykaev  9 V P Druzhinin  9   10 V B Golubev  9   10 E A Kozyrev  9   10 E A Kravchenko  9   10 A P Onuchin  9   10   11 S I Serednyakov  9   10 Yu I Skovpen  9   10 E P Solodov  9   10 K Yu Todyshev  9   10 A J Lankford  12 J W Gary  13 O Long  13 A M Eisner  14 W S Lockman  14 W Panduro Vazquez  14 D S Chao  15 C H Cheng  15 B Echenard  15 K T Flood  15 D G Hitlin  15 J Kim  15 Y Li  15 T S Miyashita  15 P Ongmongkolkul  15 F C Porter  15 M Röhrken  15 Z Huard  16 B T Meadows  16 B G Pushpawela  16 M D Sokoloff  16 L Sun  16 J G Smith  17 S R Wagner  17 D Bernard  18 M Verderi  18 D Bettoni  19 C Bozzi  19 R Calabrese  19   20 G Cibinetto  19   20 E Fioravanti  19   20 I Garzia  19   20 E Luppi  19   20 V Santoro  19 A Calcaterra  21 R de Sangro  21 G Finocchiaro  21 S Martellotti  21 P Patteri  21 I M Peruzzi  21 M Piccolo  21 M Rotondo  21 A Zallo  21 S Passaggio  22 C Patrignani  22 H M Lacker  23 B Bhuyan  24 U Mallik  25 C Chen  26 J Cochran  26 S Prell  26 A V Gritsan  27 N Arnaud  28 M Davier  28 F Le Diberder  28 A M Lutz  28 G Wormser  28 D J Lange  29 D M Wright  29 J P Coleman  30 E Gabathuler  30 D E Hutchcroft  30 D J Payne  30 C Touramanis  30 A J Bevan  31 F Di Lodovico  31 R Sacco  31 G Cowan  32 Sw Banerjee  33 D N Brown  33 C L Davis  33 A G Denig  34 W Gradl  34 K Griessinger  34 A Hafner  34 K R Schubert  34 R J Barlow  35 G D Lafferty  35 R Cenci  36 A Jawahery  36 D A Roberts  36 R Cowan  37 S H Robertson  38   39 R M Seddon  39 B Dey  40 N Neri  40 F Palombo  40   41 R Cheaib  42 L Cremaldi  42 R Godang  42 D J Summers  42 P Taras  43 G De Nardo  44 C Sciacca  44 G Raven  45 C P Jessop  46 J M LoSecco  46 K Honscheid  47 R Kass  47 A Gaz  48 M Margoni  48   49 M Posocco  48 G Simi  48   49 F Simonetto  48   49 R Stroili  48   49 S Akar  50 E Ben-Haim  50 M Bomben  50 G R Bonneaud  50 G Calderini  50 J Chauveau  50 G Marchiori  50 J Ocariz  50 M Biasini  51   52 E Manoni  51 A Rossi  51 G Batignani  53   54 S Bettarini  53   54 M Carpinelli  53   54 G Casarosa  53   54 M Chrzaszcz  53 F Forti  53   54 M A Giorgi  53   54 A Lusiani  53   55 B Oberhof  53   54 E Paoloni  53   54 M Rama  53 G Rizzo  53   54 J J Walsh  53 L Zani  53   54 A J S Smith  56 F Anulli  57 R Faccini  57   58 F Ferrarotto  57 F Ferroni  57   58 A Pilloni  57   58 G Piredda  57 C Bünger  59 S Dittrich  59 O Grünberg  59 M Heß  59 T Leddig  59 C Voß  59 R Waldi  59 T Adye  60 F F Wilson  60 S Emery  61 G Vasseur  61 D Aston  62 C Cartaro  62 M R Convery  62 J Dorfan  62 W Dunwoodie  62 M Ebert  62 R C Field  62 B G Fulsom  62 M T Graham  62 C Hast  62 W R Innes  62 P Kim  62 D W G S Leith  62 S Luitz  62 D B MacFarlane  62 D R Muller  62 H Neal  62 B N Ratcliff  62 A Roodman  62 M K Sullivan  62 J Va'vra  62 W J Wisniewski  62 M V Purohit  63 J R Wilson  63 A Randle-Conde  64 S J Sekula  64 H Ahmed  65 M Bellis  66 P R Burchat  66 E M T Puccio  66 M S Alam  67 J A Ernst  67 R Gorodeisky  68 N Guttman  68 D R Peimer  68 A Soffer  68 S M Spanier  69 J L Ritchie  70 R F Schwitters  70 J M Izen  71 X C Lou  71 F Bianchi  72   73 F De Mori  72   73 A Filippi  72 D Gamba  72   73 L Lanceri  74 L Vitale  74 F Martinez-Vidal  75 A Oyanguren  75 J Albert  76 A Beaulieu  76 F U Bernlochner  76 G J King  76 R Kowalewski  76 T Lueck  76 I M Nugent  76 J M Roney  76 R J Sobie  77   76 N Tasneem  76 T J Gershon  78 P F Harrison  78 T E Latham  78 R Prepost  79 S L Wu  79 <i>B</i><span class="sc"><i>a</i></span><i>B</i><span class="sc"><i>ar</i></span> Collaboration
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Free article

Observation of the Decay D^{0}→K^{-}π^{+}e^{+}e^{-}

J P Lees et al. Phys Rev Lett. .
Free article

Abstract

We report the observation of the rare charm decay D^{0}→K^{-}π^{+}e^{+}e^{-}, based on 468 fb^{-1} of e^{+}e^{-} annihilation data collected at or close to the center-of-mass energy of the ϒ(4S) resonance with the BABAR detector at the SLAC National Accelerator Laboratory. We find the branching fraction in the invariant mass range 0.675<m(e^{+}e^{-})<0.875 GeV/c^{2} of the electron-positron pair to be B(D^{0}→K^{-}π^{+}e^{+}e^{-})=(4.0±0.5±0.2±0.1)×10^{-6}, where the first uncertainty is statistical, the second systematic, and the third due to the uncertainty in the branching fraction of the decay D^{0}→K^{-}π^{+}π^{+}π^{-} used as a normalization mode. The significance of the observation corresponds to 9.7 standard deviations including systematic uncertainties. This result is consistent with the recently reported D^{0}→K^{-}π^{+}μ^{+}μ^{-} branching fraction, measured in the same invariant mass range, and with the value expected in the standard model. In a set of regions of m(e^{+}e^{-}), where long-distance effects are potentially small, we determine a 90% confidence level upper limit on the branching fraction B(D^{0}→K^{-}π^{+}e^{+}e^{-})<3.1×10^{-6}.

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