English

Unitarity constraints and the dispersive matrix

High Energy Physics - Phenomenology 2024-04-02 v1 High Energy Physics - Experiment High Energy Physics - Lattice

Abstract

We present updated estimates of Vcb\vert V_{cb} \vert and R(D())R(D^{(*)}) based on all the available theoretical and experimental data on semileptonic BD()νB \to D^{(*)} \ell \nu_\ell decays. These values have been obtained by using the Dispersive Matrix method to describe the hadronic form factors. By analysing all the lattice data we get the theoretical values Rth(D)=0.296±0.008R^{\rm th}(D) = 0.296 \pm 0.008 and Rth(D)=0.262±0.009R^{\rm th}(D^*) = 0.262 \pm 0.009, which are consistent with the corresponding HFLAV averages at the 2.0σ\simeq 2.0\,\sigma and the 1.5σ\simeq 1.5\,\sigma level, respectively. Moreover, from a bin-per-bin study of the experimental data we obtain the values Vcb=(41.0±1.2)103\vert V_{cb} \vert = (41.0 \pm 1.2) \cdot10^{-3} from BDB \to D decay and Vcb=(39.92±0.64)103\vert V_{cb} \vert = (39.92 \pm 0.64) \cdot10^{-3} from BDB \to D^* one, whose differences with the latest inclusive determinations never exceed the 2.5σ\simeq 2.5\,\sigma level.

Keywords

Cite

@article{arxiv.2404.00334,
  title  = {Unitarity constraints and the dispersive matrix},
  author = {Guido Martinelli and Silvano Simula and Ludovico Vittorio},
  journal= {arXiv preprint arXiv:2404.00334},
  year   = {2024}
}

Comments

6 pages, 2 figures. Presented at the 12th Workshop on the CKM Unitarity Triangle, 18-22 September 2023, Santiago de Compostela

R2 v1 2026-06-28T15:39:04.146Z