arXiv:hep-lat/9601017·v1·High Energy Physics — Lattice
Semileptonic Decays: an Update Down Under
Abstract
Heavy-meson semileptonic decays calculations on the lattice are reviewed. The focus is upon obtaining reliable matrix elements. Errors that depend upon the lattice spacing, , are an important source of systematic error. Full improvement of matrix elements for arbitrary-mass four-component quarks is discussed. With improvement, bottom-quark matrix elements can be calculated directly using current lattices. Momentum dependent errors for -improved quarks and statistical noise limit momenta to around 1 GeV/c with current lattices. Hence, maximum recoil momenta can be reached for decays while only a fraction of the maximum recoil momentum can be reliably studied for the light-meson decay modes of the . Differential decay rates and partial widths are phenomenologically important quantities in decays that can be reliably determined with present lattices.
Comments: 14 pages, 9 postscript figures, requires espcrc2.sty