English

B Mixing on the Lattice: $f_B$, $f_{B_s}$ and Related Quantities

High Energy Physics - Phenomenology 2009-10-30 v1 High Energy Physics - Lattice

Abstract

The MILC collaboration computation of heavy-light decay constants is described. Results for fBf_B, fBsf_{B_s}, fDf_D, fDsf_{D_s} and their ratios are presented. These results are still preliminary, but the analysis is close to being completed. Sources of systematic error, both within the quenched approximation and from quenching itself, are estimated, although the latter estimate is rather crude. A sample of our results is: fB=153±1013+360+13MeVf_B=153 \pm 10 {}^{+36}_{-13} {}^{+13}_{-0} MeV, fBs/fB=1.10±0.020.03+0.050.02+0.03f_{B_s}/f_B = 1.10 \pm 0.02 {}^{+0.05}_{-0.03} {}^{+0.03}_{-0.02}, and fB/fDs=0.76±0.030.04+0.070.01+0.02f_{B}/f_{D_s} = 0.76 \pm 0.03 {}^{+0.07}_{-0.04} {}^{+0.02}_{-0.01}, where the errors are statistical, systematic (within the quenched approximation), and systematic (of quenching), respectively. The largest source of error comes from the extrapolation to the continuum. The second largest source is the chiral extrapolation. At present, the central values are based on linear chiral extrapolations; a shift to quadratic extrapolations would for example raise fBf_B by 20\approx 20 MeV and thereby make the error within the quenched approximation more symmetric.

Keywords

Cite

@article{arxiv.hep-ph/9709328,
  title  = {B Mixing on the Lattice: $f_B$, $f_{B_s}$ and Related Quantities},
  author = {C. Bernard and T. Blum and T. DeGrand and C. DeTar and Steven Gottlieb and U. M. Heller and J. Hetrick and C. McNeile and K. Rummukainen and R. Sugar and D. Toussaint and M. Wingate},
  journal= {arXiv preprint arXiv:hep-ph/9709328},
  year   = {2009}
}

Comments

9 pages, 3 included postscript figures, uses aipproc.sty and epsfig. Invited talk presented by C. Bernard at "b20: Twenty Beautiful Years of Bottom Physics," Illinois Institute of Technology, June 29-July 2, 1997