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000646214 0247_ $$2arXiv$$aarXiv:2411.04268
000646214 037__ $$aPUBDB-2026-00759
000646214 041__ $$aEnglish
000646214 088__ $$2arXiv$$aarXiv:2411.04268
000646214 088__ $$2CERN$$aCERN-TH-2024-192
000646214 088__ $$2Fermilab$$aFERMILAB-PUB-24-0785-T
000646214 082__ $$a530
000646214 1001_ $$aAoki, Y.$$b0
000646214 245__ $$aFLAG review 2024
000646214 260__ $$c2026
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000646214 500__ $$a437 pages, 53 Figures, 189 tables. Minor changes, version as published in PRD, arXiv admin note: substantial text overlap with arXiv:2111.09849, arXiv:1902.08191, arXiv:1607.00299, arXiv:1310.8555
000646214 520__ $$aWe review lattice results related to pion, kaon, D-meson, B-meson, and nucleon physics with the aim of making them easily accessible to the nuclear and particle physics communities. More specifically, we report on the determination of the light-quark masses, the form factor f+(0) arising in the semileptonic K→π transition at zero momentum transfer, as well as the decay-constant ratio fK/fπ and its consequences for the Cabibbo–Kobayashi–Maskawa (CKM) matrix elements Vus and Vud. We review the determination of the BK parameter of neutral kaon mixing as well as the additional four B parameters that arise in theories of physics beyond the Standard Model. For the heavy-quark sector, we provide results for mc and mb as well as those for the decay constants, form factors, and mixing parameters of charmed and bottom mesons and baryons. These are the heavy-quark quantities most relevant for the determination of CKM matrix elements and the global CKM unitarity-triangle fit. We review the status of lattice determinations of the strong coupling constant αs. We review the determinations of nucleon charges from the matrix elements of both isovector and flavor-diagonal axial, scalar and tensor local quark bilinears, and momentum fraction, helicity moment and the transversity moment from one-link quark bilinears. We also review determinations of scale-setting quantities. Finally, in this review we have added a new section on the general definition of the low-energy limit of the Standard Model.
000646214 536__ $$0G:(DE-HGF)POF4-611$$a611 - Fundamental Particles and Forces (POF4-611)$$cPOF4-611$$fPOF IV$$x0
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000646214 7001_ $$aBlum, T.$$b1
000646214 7001_ $$aCollins, S.$$b2
000646214 7001_ $$aDel Debbio, L.$$b3
000646214 7001_ $$aDella Morte, M.$$b4
000646214 7001_ $$aDimopoulos, P.$$b5
000646214 7001_ $$aFeng, X.$$b6
000646214 7001_ $$aGolterman, M.$$b7
000646214 7001_ $$aGottlieb, Steven$$b8
000646214 7001_ $$aGupta, R.$$b9
000646214 7001_ $$aHerdoíza, G.$$b10
000646214 7001_ $$aHernandez, P.$$b11
000646214 7001_ $$aJüttner, A.$$b12
000646214 7001_ $$aKaneko, T.$$b13
000646214 7001_ $$aLunghi, E.$$b14
000646214 7001_ $$00000-0003-1034-1004$$aMeinel, S.$$b15
000646214 7001_ $$00000-0001-5142-3490$$aMonahan, C.$$b16
000646214 7001_ $$aNicholson, A.$$b17
000646214 7001_ $$aOnogi, T.$$b18
000646214 7001_ $$aPetreczky, P.$$b19
000646214 7001_ $$00000-0002-6059-917X$$aPortelli, A.$$b20
000646214 7001_ $$aRamos, A.$$b21
000646214 7001_ $$aSharpe, S. R.$$b22
000646214 7001_ $$aSimone, J. N.$$b23
000646214 7001_ $$aSint, S.$$b24
000646214 7001_ $$aSommer, R.$$b25
000646214 7001_ $$aTantalo, N.$$b26
000646214 7001_ $$aVan de Water, R.$$b27
000646214 7001_ $$00000-0002-9626-5200$$aVaquero, A.$$b28
000646214 7001_ $$00000-0002-7754-9590$$aWenger, U.$$b29
000646214 7001_ $$aWittig, H.$$b30
000646214 7001_ $$0P:(DE-HGF)0$$aFlavour Lattice Averaging Collaboration$$b31$$eCollaboration author
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000646214 9201_ $$0I:(DE-H253)Z_ZPPT-20210408$$kZ_ZPPT$$lZeuthen Particle PhysicsTheory$$x0
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