B Meson Semileptonic Form Factors from Unquenched Lattice QCD
Abstract
The semileptonic process, B --> \pi l \nu, is studied via full QCD Lattice simulations. We use unquenched gauge configurations generated by the MILC collaboration. These include the effect of vacuum polarization from three quark flavors: the quark and two very light flavors () of variable mass allowing extrapolations to the physical chiral limit. We employ Nonrelativistic QCD to simulate the quark and a highly improved staggered quark action for the light sea and valence quarks. We calculate the form factors and in the chiral limit for the range 16 GeV and obtain . Combining this with a preliminary average by the Heavy Flavor Averaging Group (HFAG'05) of recent branching fraction data for exclusive B semileptonic decays from the BaBar, Belle and CLEO collaborations, leads to . PLEASE NOTE APPENDIX B with an ERRATUM, to appear in Physical Review D, to the published version of this e-print (Phys.Rev.D 73, 074502 (2006)). Results for the form factor in the chiral limit have changed significantly. The last two sentences in this abstract should now read; "We calculate the form factor and in the chiral limit for the range 16 Gev and obtain . Combining this with a preliminary average by the Heavy Flavor Averagibg Group (HFAG'05) of recent branching fraction data for exclusive B semileptonic decays from the BaBar, Belle and CLEO collaborations, leads to ."
Cite
@article{arxiv.hep-lat/0601021,
title = {B Meson Semileptonic Form Factors from Unquenched Lattice QCD},
author = {Emel Gulez and Alan Gray and Matthew Wingate and Christine T. H. Davies and G. Peter Lepage and Junko Shigemitsu},
journal= {arXiv preprint arXiv:hep-lat/0601021},
year = {2014}
}
Comments
15 pages, 14 figures. This replacement includes the original version of the e-print, as published in Phys.Rev.D{\bf 73}, 074502 (2006), and additionally a new Appendix B with an ERRATUM to appear in Physicsl Review D. Results for the form factor $f_+(q^2)$ in the chiral limit have changed considerably