FLAG Review 2019

We review lattice results related to pion, kaon, D-meson, B-meson, and nucleon physics with the aim of making them easily accessible to the nuclear and particle physics communities. More specifically, we report on the determination of the light-quark masses, the form factor f+(0) arising in the semi...

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Veröffentlicht in:The European physical journal. C, Particles and fields Particles and fields, 2020-02, Vol.80 (2), p.1-268
Hauptverfasser: Aoki, S, Aoki, Y, Bečirević, D, Blum, T, Colangelo, G, Collins, S, Della Morte M, Dimopoulos, P, Dürr, S, Fukaya, H, Golterman, M, Gottlieb, Steven, Gupta, R, Hashimoto, S, Heller, U M, Herdoiza, G, Horsley, R, Jüttner, A, Kaneko, T, Lin C-J D, Lunghi, E, Mawhinney, R, Nicholson, A, Onogi, T, Pena, C, Portelli, A, Ramos, A, Sharpe, S R, Simone, J N, Simula, S, Sommer, R, Van de Water R, Vladikas, A, Wenger, U, Wittig, H
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Sprache:eng
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Zusammenfassung:We review lattice results related to pion, kaon, D-meson, B-meson, and nucleon physics with the aim of making them easily accessible to the nuclear and particle physics communities. More specifically, we report on the determination of the light-quark masses, the form factor f+(0) arising in the semileptonic K→π transition at zero momentum transfer, as well as the decay constant ratio fK/fπ and its consequences for the CKM matrix elements Vus and Vud. Furthermore, we describe the results obtained on the lattice for some of the low-energy constants of SU(2)L×SU(2)R and SU(3)L×SU(3)R Chiral Perturbation Theory. We review the determination of the BK parameter of neutral kaon mixing as well as the additional four B parameters that arise in theories of physics beyond the Standard Model. For the heavy-quark sector, we provide results for mc and mb as well as those for D- and B-meson decay constants, form factors, and mixing parameters. These are the heavy-quark quantities most relevant for the determination of CKM matrix elements and the global CKM unitarity-triangle fit. We review the status of lattice determinations of the strong coupling constant αs. Finally, in this review we have added a new section reviewing results for nucleon matrix elements of the axial, scalar and tensor bilinears, both isovector and flavor diagonal.
ISSN:1434-6044
1434-6052
DOI:10.1140/epjc/s10052-019-7354-7