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Analytic Resolution of Puzzle in $Bto K pi$ decays.pdf

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a r X i v : 0 7 0 7 .2 9 6 7 v 3 [ h e p - p h ] 1 1 J u l 2 0 0 8 Analytic Resolution of Puzzle in B → Kπ decays C. S. Kim,? Sechul Oh,? and Yeo Woong Yoon? Department of Physics, Yonsei University, Seoul 120-479, Korea (Dated: July 11, 2008) Abstract We present a systematic method to extract each standard model (SM)-like hadronic parameter as well as new physics parameters in analytic way for B → Kπ decays. Using the analytic method to the currently available experimental data, we find two possible solutions analytically equivalent: one showing the large SM-like color-suppressed tree contribution and the other showing the large SM-like EWP contribution. The magnitude of the NP amplitude and its weak phase are quite large. For instance, we find |PNP /P | = 0.39 ± 0.13, φNP = 91? ± 15? and δNP = 8? ± 27?, which are the ratio of the NP-to-SM contribution, the weak and the relative strong phase of the NP amplitude, respectively. ?Electronic address: cskim@yonsei.ac.kr ?Electronic address: scoh@phya.yonsei.ac.kr ?Electronic address: ywyoon@yonsei.ac.kr 1 I. INTRODUCTION Brilliant progress of the B factory experiments sheds light on the study of rare B decays, which are crucial for testing the standard model (SM) and detecting any hints beyond the SM. Especially, B → Kπ decays are of great importance not only for investigating new physics (NP) due to the property of penguin dominance but also examining one of angles of Cabibbo-Kobayashi-Maskawa (CKM) unitarity triangle [1, 2, 3]. Many elaborate theoretical calculations based on QCDF [4], PQCD [5, 6] and SCET [7] have been done for physical observables within the SM. But, some experimental data have shown considerable discrepancy from the theoretical estimation, inspiring searching NP in B → Kπ decays. The ratios Rc ≡ 2B(B + → K+π0) B(B+ → K0π+) and Rn ≡ 1 2 B(B0 → K+π?) B(B0 → K0π0) (1) are expected to satisfy Rc ≈ Rn within the SM [3]. Before ICHEP-2006, those experimental values had shown a significant discrep
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