4.8 Article

Determination of |Vus| from a Lattice QCD Calculation of the K → πlv Semileptonic Form Factor with Physical Quark Masses

期刊

PHYSICAL REVIEW LETTERS
卷 112, 期 11, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevLett.112.112001

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资金

  1. U.S. Department of Energy [DEFG02-91ER40628, DE-FC02-06ER41446, DE-FG02-91ER40661, DOE DE-FG02-13ER42001, DE-FG02-04ER-41298]
  2. National Science Foundation [PHY-1067881, PHY-0757035]
  3. URA Visiting Scholars' program
  4. Science and Technology Facilities Council and the Scottish Universities Physics Alliance
  5. MINECO (Spain) [FPA2010-16696, FPA2006-05294]
  6. Ramon y Cajal Program
  7. Junta de Andalucia (Spain) [FQM-101, FQM-6552]
  8. European Commission [PCIG10-GA-2011-303781]
  9. Brookhaven Science Associates, LLC [DE-AC02-98CH10886]
  10. U.S. Department of Energy
  11. Fermi Research Alliance, LLC [DE-AC0207CH11359]
  12. Direct For Computer & Info Scie & Enginr
  13. Office of Advanced Cyberinfrastructure (OAC) [0832315] Funding Source: National Science Foundation
  14. Division Of Physics
  15. Direct For Mathematical & Physical Scien [1067881, 1316748] Funding Source: National Science Foundation
  16. Office of Advanced Cyberinfrastructure (OAC)
  17. Direct For Computer & Info Scie & Enginr [0910735] Funding Source: National Science Foundation

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We calculate the kaon semileptonic form factor f (+) (0) from lattice QCD, working, for the first time, at the physical light-quark masses. We use gauge configurations generated by the MILC Collaboration with N-f = 2 + 1 + 1 flavors of sea quarks, which incorporate the effects of dynamical charm quarks as well as those of up, down, and strange. We employ data at three lattice spacings to extrapolate to the continuum limit. Our result, f (+) (0) = 0.9704(32), where the error is the total statistical plus systematic uncertainty added in quadrature, is the most precise determination to date. Combining our result with the latest experimental measurements of K semileptonic decays, one obtains the Cabibbo-Kobayashi-Maskawa matrix element vertical bar V-us vertical bar = 0.22290(74)(52), where the first error is from f (+) (0) and the second one is from experiment. In the first-row test of Cabibbo-Kobayashi-Maskawa unitarity, the error stemming from vertical bar V-us vertical bar is now comparable to that from vertical bar V-ud vertical bar

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