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B(s,d)→ℓ(+)ℓ(-) in the standard model with reduced theoretical uncertainty.

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TLDR
Inclusion of the new corrections removes major theoretical uncertainties of perturbative origin that have just begun to dominate over the parametric ones in the standard model.
Abstract
We combine our new results for the O(αem) and O(αs2) corrections to Bs,d→l+l-, and present updated branching ratio predictions for these decays in the standard model. Inclusion of the new corrections removes major theoretical uncertainties of perturbative origin that have just begun to dominate over the parametric ones. For the recently observed muonic decay of the Bs meson, our calculation gives B¯(Bs→μ+μ-)=(3.65±0.23)×10-9.

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Journal ArticleDOI

Review of lattice results concerning low-energy particle physics

TL;DR: The determination of the light-quark masses, the form factor, and the decay-constant ratio arising in semileptonic $$K \rightarrow \pi $$K→π transition at zero momentum transfer are reported on.
Journal ArticleDOI

Review of lattice results concerning low-energy particle physics: Flavour Lattice Averaging Group (FLAG).

TL;DR: The determination of the light-quark masses, the form factor, and the decay constant ratio arising in the semileptonic $$K \rightarrow \pi $$K→π transition at zero momentum transfer are reported on.
Journal ArticleDOI

FLAG Review 2019

TL;DR: In this article, a review of lattice results related to pion, kaon, D-meson, neutral kaon mixing, B-meon, and nucleon physics with the aim of making them easily accessible to the nuclear and particle physics communities is presented.
Journal ArticleDOI

Observation of the rare B-s(0)->mu(+)mu(-) decay from the combined analysis of CMS and LHCb data

Vardan Khachatryan, +2805 more
- 04 Jun 2015 - 
TL;DR: In this paper, the branching fractions of the B meson (B-s(0)) and the B-0 meson decaying into two oppositely charged muons (mu(+) and mu(-)) were observed.
Journal ArticleDOI

Patterns of New Physics in b → sℓ+ℓ− transitions in the light of recent data

TL;DR: In this article, a global fit to all available b → sl+l− data (l = e, μ) was performed in a model-independent way allowing for different patterns of New Physics.
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