English

Kaon Distribution Amplitude from QCD Sum Rules

High Energy Physics - Phenomenology 2009-11-10 v2

Abstract

We present a new calculation of the first Gegenbauer moment a1Ka_1^K of the kaon light-cone distribution amplitude. This moment is determined by the difference between the average momenta of strange and nonstrange valence quarks in the kaon. To calculate a1Ka_1^K, QCD sum rule for the diagonal correlation function of local and nonlocal axial-vector currents is used. Contributions of condensates up to dimension six are taken into account, including O(αs)O(\alpha_s)-corrections to the quark-condensate term. We obtain a1K=0.05±0.02a_1^K=0.05\pm 0.02, differing by the sign and magnitude from the recent sum-rule estimate from the nondiagonal correlation function of pseudoscalar and axial-vector currents. We argue that the nondiagonal sum rule is numerically not reliable. Furthermore, an independent indication for a positive a1Ka_1^K is given, based on the matching of two different light-cone sum rules for the KπK\to\pi form factor. With the new interval of a1Ka_1^K we update our previous numerical predictions for SU(3)-violating effects in B(s)KB_{(s)}\to K form factors and charmless (B) decays.

Keywords

Cite

@article{arxiv.hep-ph/0407226,
  title  = {Kaon Distribution Amplitude from QCD Sum Rules},
  author = {A. Khodjamirian and Th. Mannel and M. Melcher},
  journal= {arXiv preprint arXiv:hep-ph/0407226},
  year   = {2009}
}

Comments

a comment and a reference added, version to appear in Phys.Rev.D, 17 pages, 7 figures