Title

Search for CP violation in D0 decay

Authors

J. Bartelt, Vanderbilt University
S. E. Csorna, Vanderbilt University
Z. Egyed, Vanderbilt University
V. Jain, Vanderbilt University
D. Gibaut, Virginia Polytechnic Institute and State University
K. Kinoshita, Virginia Polytechnic Institute and State University
P. Pomianowski, Virginia Polytechnic Institute and State University
B. Barish, California Institute of Technology
M. Chadha, California Institute of Technology
S. Chan, California Institute of Technology
D. F. Cowen, California Institute of Technology
G. Eigen, California Institute of Technology
J. S. Miller, California Institute of Technology
C. O'Grady, California Institute of Technology
J. Urheim, California Institute of Technology
A. J. Weinstein, California Institute of Technology
F. Würthwein, California Institute of Technology
D. M. Asner, University of California, San Diego
M. Athanas, University of California, San Diego
D. W. Bliss, University of California, San Diego
W. S. Brower, University of California, San Diego
G. Masek, University of California, San Diego
H. P. Paar, University of California, San Diego
J. Gronberg, University of California, Santa Barbara
C. M. Korte, University of California, Santa Barbara
R. Kutschke, University of California, Santa Barbara
S. Menary, University of California, Santa Barbara
R. J. Morrison, University of California, Santa Barbara
S. Nakanishi, University of California, Santa Barbara
H. N. Nelson, University of California, Santa Barbara
T. K. Nelson, University of California, Santa Barbara
C. Qiao, University of California, Santa Barbara
J. D. Richman, University of California, Santa Barbara

Document Type

Article

Publication Date

1-1-1995

Abstract

Using 2.7 fb-1 of data taken with the CLEO II detector, we have searched for CP violation in the charm system. We looked for asymmetries in the number of decays of D0's and D̄0's to the CP eigenstates K+K-, KS0φ, and KS0π0. Confidence intervals (90%) on these asymmetries were found to be -0.020

Publication Name

Physical Review D

Volume Number

52

First Page

4860

Last Page

4867

Issue Number

9

DOI

10.1103/PhysRevD.52.4860

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