arXiv:1509.00592·v3·High Energy Physics — Lattice
Kaon BSM B-parameters using improved staggered fermions from unquenched QCD
Benjamin J. Choi🇰🇷 · Yong-Chull Jang🇰🇷 · Chulwoo Jung🇺🇸 · Hwancheol Jeong🇰🇷 · Jangho Kim · Jongjeong Kim · Sunghee Kim · Weonjong Lee🇰🇷 · Jaehoon Leem🇰🇷 · Jeonghwan Pak🇰🇷 · Sungwoo Park🇰🇷 · Stephen R. Sharpe🇺🇸 · Boram Yoon (SWME Collaboration)🇺🇸
Abstract
We present results for the matrix elements of the additional operators that appear in models of physics beyond the Standard Model (BSM), expressed in terms of four BSM -parameters. Combined with experimental results for and , these constrain the parameters of BSM models. We use improved staggered fermions, with valence HYP-smeared quarks and flavors of "asqtad" sea quarks. The configurations have been generated by the MILC collaboration. The matching between lattice and continuum four-fermion operators and bilinears is done perturbatively at one-loop order. We use three lattice spacings for the continuum extrapolation: , and fm. Valence light-quark masses range down to while the light sea-quark masses range down to . Compared to our previous published work, we have added four additional lattice ensembles, leading to better controlled extrapolations in the lattice spacing and sea-quark masses. We report final results for two renormalization scales, and , and compare them to those obtained by other collaborations. Agreement is found for two of the four BSM -parameters ( and ). The other two ( and ) differ significantly from those obtained using RI-MOM renormalization as an intermediate scheme, but are in agreement with recent preliminary results obtained by the RBC-UKQCD collaboration using RI-SMOM intermediate schemes.
Comments: 17 pages, 24 figures, 13 tables, and updated