Determination of the Cabibbo-Kobayashi-Maskawa matrix element $|V_{cb}|$
Giulia Ricciardi, Marcello Rotondo

TL;DR
This review discusses the methods and recent results for precisely determining the CKM matrix element |V_{cb}|, crucial for testing the Standard Model's flavor sector and unitarity, through semileptonic B decays and other channels.
Contribution
It provides a comprehensive analysis of both experimental and theoretical techniques for extracting |V_{cb}|, including recent advancements and future prospects, highlighting the importance of precision measurements.
Findings
Most precise |V_{cb}| from semileptonic decays
Inclusive and exclusive decay methods compared
Future measurements may improve accuracy
Abstract
In this review we present and discuss the determination of the magnitude of the Cabibbo-Kobayashi-Maskawa (CKM) matrix parameter . The CKM matrix parametrizes the weak charged current interactions of quarks in the Standard Model (SM), and a precise determination of its elements has always been one of the most important targets of particle physics. The precise knowledge of the value plays a pivotal role in testing the flavour sector of the SM and in the analyses of the unitarity of the CKM matrix. The SM does not predict the values of the CKM matrix elements, which have to be extracted by experimental data. Given the variety of channels that allow the extraction of , different theoretical and experimental techniques are mustered for the determination. The exertion toward precision represents not only a significant test of our theoretical procedures…
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