English

SU(3) Flavor Breaking in Hadronic Matrix Elements for $B - \bar B$ Oscillations

High Energy Physics - Lattice 2009-10-31 v1 High Energy Physics - Phenomenology

Abstract

Results in the quenched approximation for SU(3) breaking ratios of the heavy-light decay constants and the ΔF=2\Delta F=2 mixing matrix elements are reported. Using lattice simulations at 6/g2=5.76/g^2=5.7, 5.85, 6.0, and 6.3, we directly compute the mixing matrix element Mhl=<Pˉhlhˉγμ(1γ5)lhˉγμ(1γ5)lPhl>M_{hl}=< \bar P_{hl}|\bar h \gamma_\mu (1-\gamma_5)l \bar h \gamma_\mu(1-\gamma_5)l|P_{hl}>. Extrapolating to the physical B meson states, B0B^0 and Bs0B_s^0, we obtain Mbs/Mbd=1.76(10)42+57M_{bs}/M_{bd} =1.76(10)^{+57}_{-42}. in the continuum limit. The systematic error includes the errors within the quenched approximation but not the errors of quenching. We also obtain the ratio of decay constants, fbs/fbd=1.17(2)6+12f_{bs}/f_{bd}=1.17(2)^{+12}_{-6}. For the B parameters we find Bbs(2GeV)=Bbd(2GeV)=1.02(13)B_{bs}(2 GeV)=B_{bd}(2 GeV)=1.02(13); we cannot resolve the SU(3) breaking effects in this case.

Cite

@article{arxiv.hep-lat/9801039,
  title  = {SU(3) Flavor Breaking in Hadronic Matrix Elements for $B - \bar B$ Oscillations},
  author = {C. Bernard and T. Blum and A. Soni},
  journal= {arXiv preprint arXiv:hep-lat/9801039},
  year   = {2009}
}

Comments

16 pages, 5 ps figures, Latex