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M. Sowa

Publications and source records attributed to M. Sowa.

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Combining Information from $B \to ππ$ and $B \to πρ, πω$ Decays

We consider the $B \to ππ$ and $B \to πρ, πω$ decays alongside each other, taking into account the contributions from all individual penguin amplitudes generated by the internal $t$, $c$, and $u$ quarks. We argue that three ratios of penguin amplitudes, each for a different internal quark, formed by dividing the individual penguin amplitude in $B \to ππ$ by the corresponding amplitude in $B \to πρ, πω$, should be equal. We study the implications of the assumed existence of this connection between $B\to ππ$ and $B \to πρ, πω$. First, accepting that in the $B \to ππ$ decays the ratio $C/T$ of the colour-suppressed factorization amplitude $C$ to the tree factorization amplitude $T$ is negligible, we determine the ratio of individual penguin amplitudes. Then, from the $B \to πρ, πω$ data, we extract the effective (i.e. possibly containing some penguin terms) tree and the effective colour-suppressed amplitudes relevant for these processes, and the corresponding solutions for the factorization amplitudes. Finally, we argue that the $C/T$ ratio in $B \to ππ$ should be identical to its counterpart in $B \to πρ, πω$ (relevant for pion emission from the decaying $b$ quark). This constraint permits the determination of $C/T$ and of other amplitude ratios directly from the data. Although the $|C/T|$ ratio extracted from the available data still carries a substantial error, it is consistent with the expected value of 0.25 - 0.5.

hep-ph

Influence of charming penguins on the extraction of gamma in B->PP decays

Charmless B->PP decays are studied using flavor SU(3) symmetry. Amplitude with charming penguin topology is considered for two cases: with zero and with arbitrary strong phase. Two sets of data (an older and the most recent one) are used in the fits, so that the stability of the fits is tested. It is shown that within the present uncertainties in the data the parameters of the fit may be significantly modified, especially the gamma angle. The fits indicate the strong phase of the charming penguin amplitude to be around $\pm 20^{o}$.

hep-ph