English

Precise determination of $B_K$ and light quark masses in quenched domain-wall QCD

High Energy Physics - Lattice 2019-08-14 v2

Abstract

We calculate non-perturbative renormalization factors at hadronic scale for ΔS=2\Delta S=2 four-quark operators in quenched domain-wall QCD using the Schr\"{o}dinger functional method. Combining them with the non-perturbative renormalization group running by the Alpha collaboration, our result yields the fully non-perturbative renormalization factor, which converts the lattice bare BKB_K to the renormalization group invariant (RGI) B^K\hat{B}_K. Applying this to the bare BKB_K previously obtained by the CP-PACS collaboration at a12,3,4a^{-1}\simeq 2, 3, 4 GeV, we obtain B^K=0.782(5)(7)\hat{B}_K=0.782(5)(7) (equivalent to BKMSˉ(NDR,2GeV)=0.565(4)(5)B_K^{\bar{\rm MS}}({\rm NDR}, 2 {\rm GeV}) = 0.565(4)(5) by 2-loop running) in the continuum limit, where the first error is statistical and the second is systematic due to the continuum extrapolation. Except the quenching error, the total error we have achieved is less than 2%, which is much smaller than the previous ones. Taking the same procedure, we obtain mu,dRGI=5.613(66)m_{u,d}^{\rm RGI}=5.613(66) MeV and msRGI=147.1(17)m_s^{\rm RGI}=147.1(17) MeV (equivalent to mu,dMSˉ(2GeV)=4.026(48)m_{u,d}^{\bar{\rm MS}}(2 {\rm GeV})=4.026(48) MeV and msMSˉ(2GeV)=105.6(12)m_{s}^{\bar{\rm MS}}(2 {\rm GeV})=105.6(12) MeV by 4-loop running) in the continuum limit.

Keywords

Cite

@article{arxiv.0803.2569,
  title  = {Precise determination of $B_K$ and light quark masses in quenched domain-wall QCD},
  author = {Yousuke Nakamura and Sinya Aoki and Yusuke Taniguchi and Tomoteru Yoshié},
  journal= {arXiv preprint arXiv:0803.2569},
  year   = {2019}
}

Comments

51 pages, 27 Postscript figures, corrected typos, added reference