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Improved constraints on D0-D0 mixing in D0 --> K+ pi- decays from the Belle detector
Authors:Zhang L M  Zhang Z P  Li J  Abe K  Abe K  Adachi I  Aihara H  Anipko D  Arinstein K  Asano Y  Aushev T  Bahinipati S  Bakich A M  Balagura V  Barbero M  Bay A  Bedny I  Belous K  Bitenc U  Bizjak I  Blyth S  Bondar A  Bozek A  Bracko M  Brodzicka J  Browder T E  Chang M-C  Chang P  Chao Y  Chen A  Chen W T  Cheon B G  Chistov R  Choi S-K  Choi Y  Choi Y K  Chuvikov A  Cole S  Dalseno J  Danilov M  Dash M  Drutskoy A  Eidelman S  Gabyshev N  Gershon T  Go A  Gokhroo G  Golob B  Gorisek A  Ha H C  Haba J  Hara T  Hastings N C  Hayasaka K  Hayashii H  Hazumi M  Hoshi Y  Hou S  Hou W-S  Hsiung Y B  Iijima T  Ikado K  Inami K  Ishikawa A  Ishino H  Itoh R
Affiliation:University of Science and Technology of China, Hefei.
Abstract:We report the results of a search for D0-D0 mixing in D0 --> K+ pi- decays based on 400 fb(-1) of data accumulated by the Belle detector at KEKB. Both assuming CP conservation and allowing for CP violation, we fit the decay-time distribution for the mixing parameters x and y, as well as for the parameter R(D), the ratio of doubly Cabibbo-suppressed decays to Cabibbo-favored decays. The 95% confidence level region in the (x'2,y') plane is obtained using a frequentist method. Assuming CP conservation, we find x'2 < 0.72 x 10(-3) and -9.9 x 10(-3) < y' < 6.8 x 10(-3) at the 95% confidence level; these are the most stringent constraints on the mixing parameters to date. The no-mixing point (0,0) has a confidence level of 3.9%. Assuming no mixing, we measure R(D) = (0.377 +/- 0.008 +/- 0.005)%.
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