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Determination of the strong phase in D0-->K+pi- using quantum-correlated measurements
Authors:Rosner J L  Alexander J P  Cassel D G  Duboscq J E  Ehrlich R  Fields L  Gibbons L  Gray R  Gray S W  Hartill D L  Heltsley B K  Hertz D  Jones C D  Kandaswamy J  Kreinick D L  Kuznetsov V E  Mahlke-Krüger H  Mohapatra D  Onyisi P U E  Patterson J R  Peterson D  Riley D  Ryd A  Sadoff A J  Shi X  Stroiney S  Sun W M  Wilksen T  Athar S B  Patel R  Yelton J  Rubin P  Eisenstein B I  Karliner I  Mehrabyan S  Lowrey N  Selen M  White E J  Wiss J  Mitchell R E  Shepherd M R  Besson D  Pedlar T K  Cronin-Hennessy D  Gao K Y  Hietala J  Kubota Y  Klein T  Lang B W  Poling R  Scott A W  Zweber P  Dobbs S  Metreveli Z  Seth K K  Tomaradze A  Libby J
Institution:Enrico Fermi Institute, University of Chicago, Chicago, Illinois 60637, USA.
Abstract:We exploit the quantum coherence between pair-produced D0 and Dover]0 in psi(3770) decays to study charm mixing, which is characterized by the parameters x and y, and to make a first determination of the relative strong phase delta between D0-->K+pi- and Dover]0-->K+pi-. Using 281 pb(-1) of e+e- collision data collected with the CLEO-c detector at Ecm=3.77 GeV, as well as branching fraction input and time-integrated measurements of RM identical with (x2 + y2)/2 and RWS identical with Gamma(D0-->K+pi-)/Gamma(Dover]0-->K+pi-) from other experiments, we find cosdelta=1.03(-0.17)(+0.31)+/-0.06, where the uncertainties are statistical and systematic, respectively. By further including other mixing parameter measurements, we obtain an alternate measurement of cosdelta=1.10+/-0.35+/-0.07, as well as x sindelta=(4.4(-1.8)(+2.7)+/-2.9)x10(-3) and delta=(22(-12-11)(+11+9)) degrees .
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