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Multiplicity Distributions in High-Energy Neutrino Interactions

Results from the Fermilab 15-ft bubble chamber on the charged-particle multiplicity distributions produced in high-energy charged-current neutrino- proton interactions are presented. Comparisons are made to $gamma$p, ep, $mu$p, and inclusive pp scattering. The mean hadronic multiplicity appears to...

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Bibliographic Details
Published in:Physical review letters 1976-01, Vol.36 (3), p.124-126
Main Authors: Chapman, J. W., Coffin, C. T., Diamond, R. N., French, H., Louis, W., Roe, B. P., Seidl, A. A., Vander Velde, J. C., Berge, J. P., Bogert, D. V., DiBianca, F. A., Cundy, D. C., Dunaitsev, A., Efremenko, V., Ermolov, P., Fowler, W., Hanft, R., Harigel, G., Huson, F. R., Kolganov, V., Mukhin, A., Nezrick, F. A., Rjabov, Y., Scott, W. G., Smart, W.
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Language:English
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Summary:Results from the Fermilab 15-ft bubble chamber on the charged-particle multiplicity distributions produced in high-energy charged-current neutrino- proton interactions are presented. Comparisons are made to $gamma$p, ep, $mu$p, and inclusive pp scattering. The mean hadronic multiplicity appears to depend only on the mass of the excited hadronic state, independent of the mode of excitation. A fit to the neutrino data gives = (1.09+-0.38) +(1.09+- 0.03)lnW$sup 2$. (AIP)
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.36.124