Improved Measurement of the Form Factors and First Search for CP Violation in the Decay of Lambda_c^+ to Lambda e^+ nu_e

Z. Metreveli,K. K. Seth, A. Tomaradze,P. Zweber,S. Ahmed,M. S. Alam,J. Ernst,L. Jian,M. Saleem,F. Wappler, H. Severini, P. Skubic,S. A. Dytman,J. A. Mueller,S. Nam, V. Savinov,J. W. Hinson,G. S. Huang,J. Lee,D. H. Miller, V. Pavlunin,R. Rangarajan,B. Sanghi,E. I. Shibata, I. P. J. Shipsey, D. Cronin-Hennessy,J. B. Thayer,E. H. Thorndike,T. E. Coan, Y. S. Gao, F. Liu, R. Stroynowski, M. Artuso, C. Boulahouache,S. Blusk,E. Dambasuren,O. Dorjkhaidav,H. Muramatsu,R. Nandakumar, T. Skwarnicki, S. Stone,J. C. Wang, A. H. Mahmood,I. Danko,G. Bonvicini,D. Cinabro, M. Dubrovin,S. McGee,A. Bornheim, E. Lipeles,S. P. Pappas,A. Shapiro, W. M. Sun, A. J. Weinstein,R. A. Briere,G. P. Chen,T. Ferguson,G. Tatishvili,H. Vogel,M. E. Watkins,N. E. Adam,K. Berkelman, V. Boisvert, D. G. Cassel,J. E. Duboscq,K. M. Ecklund,R. Ehrlich, R. S. Galik, L. Gibbons,B. Gittelman,S. W. Gray,D. L. Hartill, B. K. Heltsley,L. Hsu,C. D. Jones,J. Kandaswamy,D. L. Kreinick,A. Magerkurth,H. Mahlke-Kruger, T. O. Meyer,N. B. Mistry, J. R. Patterson, D. Peterson,J. Pivarski,S. J. Richichi, D. Riley,A. J. Sadoff,H. Schwarthoff,M. R. Shepherd,J. G. Thayer,D. Urner,T. Wilksen, A. Warburton,M. Weinberger,S. B. Athar, P. Avery,L. Breva-Newell,V. Potlia,H. Stoeck, J. Yelton, K. Benslama, B. I. Eisenstein,G. D. Gollin,I. Karliner, N. Lowrey, C. Plager,C. Sedlack,M. Selen,J. J. Thaler,J. Williams, K. W. Edwards, D. Besson,S. Anderson, V. V. Frolov, D. T. Gong,Y. Kubota, R. Poling,A. Smith,C. J. Stepaniak,J. Urheim

msra(2003)

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摘要
Using the CLEO detector at the Cornell Electron Storage Ring we have studied the angular distributions in the decay Lambda_c^+ to Lambda e+ nu_e. By performing a four-dimensional maximum likelihood fit, we extract the form factor ratio, R = f_2/f_1, and the pole mass, which determines the shape of the form factors, M_{pole}. They are found to be -0.31 +/- 0.05_{stat} +/- 0.04_{syst}$ and (2.13 +/- 0.07_{stat} +/- 0.10_{syst}) GeV/c^2, respectively. These results correspond to the following value of the decay asymmetry parameter: alpha_{Lambda_c} = -0.85 +/- {0.03}_{stat} +/- 0.02_{sys}, for = 0.67 (GeV/c^2)^2. We search for CP violation in the angular distributions of the decay and find no evidence for CP violation, obtaining anasymmetry ratio; A_{Lambda_{c}} = (alpha_{Lambda_c} + alpha_{\bar{Lambda}_c}) / (alpha_{Lambda_c} - alpha_{\bar{Lambda}_c}) = 0.01 +/- 0.03_{stat} +/- 0.01_{sys} +/- 0.02_{A_{Lambda}}, where the third error is from the uncertainty in the world average of the CP violating parameter, A_{Lambda}, for Lambda decay to p pi^-. All results presented in this paper are preliminary.
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关键词
form factor,cp violation,maximum likelihood
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