English

$K$ to $\pi\pi$ Decay amplitudes from Lattice QCD

High Energy Physics - Lattice 2011-12-23 v1 High Energy Physics - Phenomenology

Abstract

We report a direct lattice calculation of the KK to ππ\pi\pi decay matrix elements for both the ΔI=1/2\Delta I=1/2 and 3/2 amplitudes A0A_0 and A2A_2 on 2+1 flavor, domain wall fermion, 163×32×1616^3\times32\times16 lattices. This is a complete calculation in which all contractions for the required ten, four-quark operators are evaluated, including the disconnected graphs in which no quark line connects the initial kaon and final two-pion states. These lattice operators are non-perturbatively renormalized using the Rome-Southampton method and the quadratic divergences are studied and removed. This is an important but notoriously difficult calculation, requiring high statistics on a large volume. In this paper we take a major step towards the computation of the physical KππK\to\pi\pi amplitudes by performing a complete calculation at unphysical kinematics with pions of mass 422\,MeV at rest in the kaon rest frame. With this simplification we are able to resolve Re(A0)(A_0) from zero for the first time, with a 25% statistical error and can develop and evaluate methods for computing the complete, complex amplitude A0A_0, a calculation central to understanding the Δ=1/2\Delta =1/2 rule and testing the standard model of CP violation in the kaon system.

Cite

@article{arxiv.1106.2714,
  title  = {$K$ to $\pi\pi$ Decay amplitudes from Lattice QCD},
  author = {T. Blum and P. A. Boyle and N. H. Christ and N. Garron and E. Goode and T. Izubuchi and C. Lehner and Q. Liu and R. D. Mawhinney and C. T. Sachrajda and A. Soni and C. Sturm and H. Yin and R. Zhou},
  journal= {arXiv preprint arXiv:1106.2714},
  year   = {2011}
}

Comments

40 pages, 12 figures