We extend the theoretical prediction for the width difference ΔΓq in the mixing of neutral B mesons in the Standard Model to next-to-next-to-leading order in αs. To this aim we calculate three-loop diagrams with two ∣ΔB∣=1 current-current operators analytically. In the matching between ∣ΔB∣=1 and ∣ΔB∣=2 effective theories we regularize the infrared divergences dimensionally and take into account all relevant evanescent operators. Further elements of the calculation are the two-loop renormalization matrix Zij for the ∣ΔB∣=2 operators and the O(αs2) corrections to the finite renormalization that ensures the 1/mb suppression of the operator R0 at two-loop order. Our theoretical prediction reads ΔΓs/ΔMs=(4.33±0.93)⋅10−3 if expressed in terms of the bottom mass in the MS scheme and ΔΓs/ΔMs=(4.20±0.95)⋅10−3 for the use of the potential-subtracted mass. While the controversy on ∣Vcb∣ affects both ΔΓs and ΔMs, the ratio ΔΓs/ΔMs is not affected by the uncertainty in ∣Vcb∣ .
@article{arxiv.2205.07907,
title = {The width difference in the $B-\bar{B}$ system at next-to-next-to-leading order of QCD},
author = {Marvin Gerlach and Ulrich Nierste and Vladyslav Shtabovenko and Matthias Steinhauser},
journal= {arXiv preprint arXiv:2205.07907},
year = {2022}
}