arXiv · hep-lat/0110142
Calculation of $K\toππ$ decay amplitudes from $K\toπ$ matrix elements in quenched domain-wall QCD
Abstract
We present a calculation of the $K\toππ$ decay amplitudes from the $K\toπ$ matrix elements using leading order relations derived in chiral perturbation theory. Numerical simulations are carried out in quenched QCD with the domain-wall fermion action and the renormalization group improved gluon action. Our results show that the I=2 amplitude is reasonably consistent with experiment whereas the I=0 amplitude is sizably smaller. Consequently the $ΔI=1/2$ enhancement is only half of the experimental value, and $ε'/ε$ is negative.
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PACS Collaboration, S. Aoki, Y. Aoki, R. Burkhalter, S. Ejiri, M. Fukugita, S. Hashimoto, N. Ishizuka, Y. Iwasaki, T. Izubuchi, K. Kanaya, T. Kaneko, Y. Kuramashi, V. Lesk, K. -I. Nagai, J. Noaki, M. Okawa, Y. Taniguchi, A. Ukawa, T. Yoshi'e. 2001-10-16. Calculation of $K\toππ$ decay amplitudes from $K\toπ$ matrix elements in quenched domain-wall QCD. https://doi.org/10.1016/s0920-5632(01)01705-4
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