High-precision measurement of the W boson mass with the CMS experiment at the LHC
Yazarlar (1)
Prof. Dr. Hasan OĞUL Sinop Üniversitesi, Türkiye
Makale Türü Açık Erişim Özgün Makale (SSCI, AHCI, SCI, SCI-Exp dergilerinde yayınlanan tam makale)
Dergi Adı Nature (Q1)
Dergi ISSN 0028-0836 Dergi Bilgileri (2023)
Makale Dili Basım Tarihi 12-2023
Kabul Tarihi 21-01-2026 Yayınlanma Tarihi 08-04-2026
Cilt / Sayı / Sayfa 652 / 8109 / 321–327 DOI 10.1038/s41586-026-10168-5
Makale Linki https://www.osti.gov/pages/biblio/2861777
UAK Araştırma Alanları
Nükleer Fizik
Özet
In the standard model of particle physics, the masses of the carriers of the weak interaction, the W and Z bosons, are uniquely related. Physics beyond the standard model could change this relationship through the effects of quantum loops of virtual particles, thus making it of great importance to measure these masses with the highest possible precision. Although the mass of the Z boson is known to the remarkable precision of 22 parts per million (2.0 MeV), the W boson mass is known much less precisely, given the difficulty of the measurement. A global fit to electroweak data, used to predict the W boson mass in the standard model, yields an uncertainty of 6 MeV. Reaching a comparable experimental precision would be a sensitive and fundamental test of the standard model. Furthermore, a precision measurement of the W boson mass performed by the CDF Collaboration at the Fermilab Tevatron has challenged the standard model by significantly disagreeing with the prediction of the global electroweak fit and the average of other measurements. We report the first W boson mass measurement by the CMS Collaboration at the CERN LHC, based on a data sample collected in 2016 at the proton-proton collision energy of 13 TeV. The W boson mass is measured using a large sample of W events via a highly granular binned maximum likelihood fit to the kinematic properties of the muons produced in the W and W boson decays. The significant in situ constraints of theoretical inputs and their corresponding uncertainties, together with an accurate determination of the experimental effects, lead to a precise W boson mass measurement, 80 …
Anahtar Kelimeler
BM Sürdürülebilir Kalkınma Amaçları
Atıf Sayıları
Web of Science 6
Scopus 6
Google Scholar 118
High-precision measurement of the W boson mass with the CMS experiment at the LHC

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