Implications of $$K\rightarrow \pi u \bar{ u }$$ for new physics in B decays

Abstract The new measurement of the $$K^+\\rightarrow \\pi ^+\\nu \\bar{\\nu }$$ K + → π + ν ν ¯ branching ratio by the NA62 collaboration represents an important milestone in precision flavour physics. Under different flavour assumptions on beyond the standard model physics, this decay mode can be related to many other observables with underlying flavour-changing currents, such as $$B\\rightarrow K\\nu \\bar{\\nu }$$ B → K ν ν ¯ or $$B_s\\rightarrow \\mu \\mu $$ B s → μ μ , effectively providing an additional handle in our exploration of flavour-violating new physics effects. We study the impact of this new result, under the hypotheses that deviations from the standard model arise from modified Z couplings, or from effects in semileptonic interactions. Finally, we review the implications of our scenarios for the yet to be measured partner mode $$K_L\\rightarrow \\pi ^0\\nu \\bar{\\nu }$$ K L → π 0 ν ν ¯ .

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Publication Details

Journal
The European Physical Journal C
Published
2026-09-12
DOI
https://doi.org/10.1140/epjc/s10052-026-16313-8
Primary Topic
Particle physics theoretical and experimental studies
Type
article
Field-Weighted Citation Impact
0.00

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article

Implications of $$K\rightarrow \pi u \bar{ u }$$ for new physics in B decays

Lukas Allwicher, Marzia Bordone
The European Physical Journal C
Particle physics theoretical and experimental studies
article

Implications of $$K\rightarrow \pi u \bar{ u }$$ for new physics in B decays

Lukas Allwicher, Marzia Bordone
article en

Abstract

Abstract The new measurement of the $$K^+\rightarrow \pi ^+\nu \bar{\nu }$$ K + → π + ν ν ¯ branching ratio by the NA62 collaboration represents an important milestone in precision flavour physics. Under different flavour assumptions on beyond the standard model physics, this decay mode can be related to many other observables with underlying flavour-changing currents, such as $$B\rightarrow K\nu \bar{\nu }$$ B → K ν ν ¯ or $$B_s\rightarrow \mu \mu $$ B s → μ μ , effectively providing an additional handle in our exploration of flavour-violating new physics effects. We study the impact of this new result, under the hypotheses that deviations from the standard model arise from modified Z couplings, or from effects in semileptonic interactions. Finally, we review the implications of our scenarios for the yet to be measured partner mode $$K_L\rightarrow \pi ^0\nu \bar{\nu }$$ K L → π 0 ν ν ¯ .

The European Physical Journal CVol. 86(9)
Deutsches Elektronen-Synchrotron DESY (DE)
Deutsche Forschungsgemeinschaft
Openalex Percentile: Top 12%
Particle physics theoretical and experimental studies
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Implications of $K\rightarrow \pi u \bar{ u }$ for new physics in B decays — Lukas Allwicher, Marzia Bordone · The European Physical Journal C (2026) | TGRS Research Map | TGRS