1994arXiv (Cornell University)Open access

CP Violation in Beauty Decays -- the Standard Model Paradigm of Large Effects

I. I. Bigi

Open full text 0 citations

Abstract

The Standard Model contains a natural source for CP asymmetries in weak decays, which is described by the KM mechanism. Beyond $ε_K$ it generates only elusive manifestations of CP violation in {\em light-}quark systems. On the other hand it naturally leads to large asymmetries in certain non-leptonic beauty decays. In particular when $B^0-\bar B^0$ oscillations are involved, theoretical uncertainties in the hadronic matrix elements either drop out or can be controlled, and one predicts asymmetries well in excess of 10\% with high parametric reliability. It is briefly described how the KM triangle can be determined experimentally and then subjected to sensitive consistency tests. Any failure would constitute indirect, but unequivocal evidence for the intervention of New Physics; some examples are sketched. Any outcome of a comprehensive program of CP studies in $B$ decays -- short of technical failure -- will provide us with fundamental and unique insights into nature's design.

Open-access reader

About this research paper

What this paper is about

The Standard Model contains a natural source for CP asymmetries in weak decays, which is described by the KM mechanism. Beyond $ε_K$ it generates only elusive manifestations of CP violation in {\em light-}quark systems. On the other hand it naturally leads to large asymmetries in certain non-leptonic beauty decays. In particular when $B^0-\bar B^0$ oscillations are involved, theoretical uncertainties in the hadronic matrix elements either drop out or can be controlled, and one predicts asymmetries well in excess of 10\% with high parametric reliability. It is briefly described how the KM triangle can be determined experimentally and then subjected to sensitive consistency tests. Any failure would constitute indirect, but unequivocal evidence for the intervention of New Physics; some examples are sketched. Any outcome of a comprehensive program of CP studies in $B$ decays -- short of technical failure -- will provide us with fundamental and unique insights into nature's design.

Why it matters

A significance statement is not available in the OpenAlex record.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

The Standard Model contains a natural source for CP asymmetries in weak decays, which is described by the KM mechanism. Beyond $ε_K$ it generates only elusive manifestations of CP violation in {\em light-}quark systems. On the other hand it naturally leads to large asymmetries in certain non-leptonic beauty decays. In particular when $B^0-\bar B^0$ oscillations are involved, theoretical uncertainties in the hadronic matrix elements either drop out or can be controlled, and one predicts asymmetries well in excess of 10\% with high parametric reliability. It is briefly described how the KM triangle can be determined experimentally and then subjected to sensitive consistency tests. Any failure would constitute indirect, but unequivocal evidence for the intervention of New Physics; some examples are sketched. Any outcome of a comprehensive program of CP studies in $B$ decays -- short of technical failure -- will provide us with fundamental and unique insights into nature's design.

Key concepts: CP violation, Physics, Particle physics, Consistency (knowledge bases), Standard Model (mathematical formulation), Hadron, Internal consistency, Physics beyond the Standard Model

Related papers

Back to paper searchBrowse research topicsOriginal source
CP Violation in Beauty Decays -- the Standard Model Paradigm of Large Effects — Research Paper | ScholarLens