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$delta$I = 1/2 rule in the PC-conserving nonleptonic weak interactions

Journal Article · · Phys. Rev., D, v. 12, no. 5, pp. 1465-1471
OSTI ID:4136094
The question of the $delta$I = 1/2 selection rule in weak nonleptonic decays is studied. We assume that the weak amplitudes of the form <$alpha$ vertical-bar H/subw/ vertical-bar 0> obey unsubtracted dispersion relations in the momentum-transfer variable s = p/sub $alpha$$/$$sup 2$ and that they obey Holder's condition in s except at possible poles. Using unitarity, the determination of the weak amplitudes is transformed into solving a Hilbert problem. This in turn is transformed into a system of Fredholm's intergral equations. The number of solutions is discussed, and the solution which satisfies our assumptions is found to be unique and can expressed in terms of the strong interaction S-matrix elements. Weak amplitudes which possess a pole, namely the PC-conserving parity-violating $delta$I = 1/2 interactions (poles K$sup 0$ and anti K$sup 0$) and the parity-conserving $delta$I = 1/2 interactions (poles kappa$sup 0$ and anti kappa$sup 0$), are shown to be consistent with our assumptions. The other $delta$I amplitudes either vanish or do not satisfy unsubtracted dispersion relations. (AIP)
Research Organization:
Physics Department, Faculty of Science, Lebanese University, Hadeth, Beirut, Lebanon
NSA Number:
NSA-33-010481
OSTI ID:
4136094
Journal Information:
Phys. Rev., D, v. 12, no. 5, pp. 1465-1471, Journal Name: Phys. Rev., D, v. 12, no. 5, pp. 1465-1471; ISSN PRVDA
Country of Publication:
United States
Language:
English

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