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September 28, 2025Journal of High Energy Physics2 citationsOpen Access

Impact on L-observables of a new combined analysis of Bd,s → K(∗) form factors

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ABAritra BiswasNGNico GubernariJMJoaquim Matias

Key Points

  • L-observables significantly change when incorporating updated B d , s → K (∗) form factors.
  • Key findings reveal that the ratio of relevant form factors, including lattice QCD data, impacts Standard Model predictions.
  • Employing novel methods allows for a reduction in hadronic uncertainties in L-observables.
  • Updated form factors can shift the interpretation of New Physics in B → VP decay mechanisms.

Abstract

A bstract We explore the impact of a combined analysis of B d, s → K (∗) form factors on a set of L -observables. The L -observables are constructed from ratios of branching fractions in B s → VV, PP, PV versus B d → VV, PP, PV decays with P = K 0, K⁰ K ¯ 0 and V = K ∗0, K^ 0 K ¯ ∗ 0, thereby partially reducing their hadronic uncertainties. We show the change of the Standard Model predictions of the L -observables under different determinations of the ratio of the relevant form factors (with correlations) including lattice QCD data and a novel light-cone sum rule analysis. In addition, we provide precise results for all B d, s → K (∗) form factors in machine-readable files. We find that the inclusion of our up-to-date results, as well as the use or omission of lattice QCD data for the form factors, has a significant impact on the L -observables. We also discuss how the New Physics interpretation is affected by the updated form factors and present revised predictions for the mechanism identified in our analysis of B → VP decays, now employing more suitable new experimental observables defined in this paper.

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Cite This Study

Biswas et al. (2025) studied this question.

synapsesocial.com/papers/68d909fc41e1c178a14f5aa8https://doi.org/10.1007/jhep09(2025)188
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