English

Precision Measurements and CKM Unitarity

High Energy Physics - Phenomenology 2016-09-06 v2

Abstract

Determinations of \vud\vud and \vus\vus along with their implications for the unitarity test \vud2+\vus2+\vub2=1\vud^2+\vus^2+\vub^2=1 are discussed. The leading two loop radiative corrections to neutron β\beta-decay are evaluated and used to derive a refined relationship \vud2τn(1+3gA2)=4908(4)\vud^2 \tau_n (1+3g_A^2)=4908(4)sec. Employing \vud=0.9740(5)\vud =0.9740(5) from superallowed nuclear decays and the measured neutron lifetime τn=885.7(7)\tau_n = 885.7(7)sec, leads to the precise prediction gA=1.2703(8)g_A=1.2703(8) which is compared with current direct experimental values. Various extractions of \vus\vus are described and updated. The long accepted Particle Data Group value of \vus\vus from fitted Ke3K_{e3} decay rates suggests a deviation from CKM unitarity but it is contradicted by more recent experimental results which confirm unitarity with good precision. An outlook for possible future advances is given.

Keywords

Cite

@article{arxiv.hep-ph/0406324,
  title  = {Precision Measurements and CKM Unitarity},
  author = {Andrzej Czarnecki and William J. Marciano and Alberto Sirlin},
  journal= {arXiv preprint arXiv:hep-ph/0406324},
  year   = {2016}
}

Comments

15 pages, version accepted for publication in the Physical Review D

R2 v1 2026-07-22T13:55:42.470Z