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Λc+ production and semileptonic decay in 29-GeV e+e- annihilation
- Klein, SR;
- Himel, T;
- Abrams, G;
- Amidei, D;
- Baden, AR;
- Barklow, T;
- Boyarski, AM;
- Boyer, J;
- Burchat, PR;
- Burke, DL;
- Butler, F;
- Dorfan, JM;
- Feldman, GJ;
- Gidal, G;
- Gladney, L;
- Gold, MS;
- Goldhaber, G;
- Haggerty, J;
- Hanson, G;
- Hayes, K;
- Herrup, D;
- Hollebeek, RJ;
- Innes, WR;
- Jaros, JA;
- Juricic, I;
- Kadyk, JA;
- Karlen, D;
- Lankford, AJ;
- Larsen, RR;
- LeClaire, BW;
- Levi, M;
- Lockyer, NS;
- Lüth, V;
- Nelson, ME;
- Ong, RA;
- Perl, ML;
- Richter, B;
- Riles, K;
- Rowson, PC;
- Schaad, T;
- Schellman, H;
- Schmidke, WB;
- Sheldon, PD;
- Trilling, GH;
- de la Vaissiere, C;
- Wagner, SR;
- Wood, DR;
- Yelton, JM
- et al.
Abstract
We present results on c+ production in 29-GeV e+e- annihilation. The c+ are observed via their semileptonic decays to e+X and +X. With radiative corrections, we find (e+e-c+X)Bc+eX)= 1.5±0.6±0.5 pb or 0.0038±0.0015±0.0012 c+e+X decay per hadronic event, and (e+e-c+X)B(c+X)= 1.4±1.4±0.4 pb or 0.0035±0.0035±0. 0011 c++X decay per hadronic event. These results can be used to place constraints on the predictions of various production models. © 1989 The American Physical Society.
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