B-physics from Nf=2 tmQCD: the Standard Model and beyond
N. Carrasco, M. Ciuchini, P. Dimopoulos, R. Frezzotti, V. Gimenez, G., Herdoiza, V. Lubicz, C. Michael, E. Picca, G.C. Rossi, F. Sanfilippo, A., Shindler, L. Silvestrini, S. Simula, C. Tarantino

TL;DR
This paper presents a comprehensive lattice QCD study of B-physics parameters, including quark masses, decay constants, and bag parameters, with implications for Standard Model tests and beyond.
Contribution
It provides new lattice QCD calculations of B-physics quantities, including bag parameters for all four-fermion operators, enabling refined tests of the Standard Model and constraints on new physics.
Findings
b-quark mass: 4.29(12) GeV
f_{Bs}: 228(8) MeV
f_{B}: 189(8) MeV
Abstract
We present a lattice QCD computation of the b-quark mass, the B and B_s decay constants, the B-mixing bag parameters for the full four-fermion operator basis as well as determinations for \xi and f_{Bq}\sqrt{B_i^{(q)}} extrapolated to the continuum limit and to the physical pion mass. We used N_f = 2 twisted mass Wilson fermions at four values of the lattice spacing with pion masses ranging from 280 to 500 MeV. Extrapolation in the heavy quark mass from the charm to the bottom quark region has been carried out on ratios of physical quantities computed at nearby quark masses, exploiting the fact that they have an exactly known infinite mass limit. Our results are m_b(m_b, \overline{\rm{MS}})=4.29(12) GeV, f_{Bs}=228(8) MeV, f_{B}=189(8) MeV and f_{Bs}/f_B=1.206(24). Moreover with our results for the bag-parameters we find \xi=1.225(31), B_1^{(s)}/B_1^{(d)}=1.01(2),…
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