Determination of the Kμ3+Ke3+ branching ratio and the separate Kl3+ decay rates

Determination of the Kμ3+Ke3+ branching ratio and the separate Kl3+ decay rates

T. Eichten,D. Haidt,K. Schultze,J. Stein,S. Natali,G. Piscitelli,F. Romano,R. Aguilar-Lloret,J. Lemonne,T.I. Pedersen,S.N. Tovey,V. Brisson,L. Kluberg,G.W. London,P. Petiau,B. Aubert,P. Chliapnikov,L.M. Chounet,D. Lê,J.P. Lowys,F. Biffis,E. Calimani,S. Ciampolillo,F. Mattiolo,A. Ferrer,P. Ladrón,R. Llosá;T. Eichten;D. Haidt;K. Schultze;J. Stein;S. Natali;G. Piscitelli;F. Romano;R. Aguilar-Lloret;J. Lemonne;T.I. Pedersen;S.N. Tovey;V. Brisson;L. Kluberg;G.W. London;P. Petiau;B. Aubert;P. Chliapnikov;L.M. Chounet;D. Lê;J.P. Lowys;F. Biffis;E. Calimani;S. Ciampolillo;F. Mattiolo;A. Ferrer;P. Ladrón;R. Llosá;
physics letters b 1968 Vol. 27 pp. 586-589
128
llosá1968physicsdetermination

Abstract

A sample of K+ mesons stopped in the CERN 1.1 m3 heavy liquid bubble chamber is used to determine the K3+ decay rates. We find 0.604 ± 0.022 for the branching ratio, and from this we deduce a mean value for of -0.6 ± 0.2. The separate and branching ratios were found to be 0.510 ± 0.017 and 0.846 ± 0.021, respectively.

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