Energy correlators that describe energy-weighted distances between two or three particles in a hadronic jet are measured using an event sample of √𝑠=13 TeV proton-proton collisions collected by the CMS experiment and corresponding to an integrated luminosity of 36.3 fb−1. The measured distributions are consistent with the trends in the simulation that reveal two key features of the strong interaction: confinement and asymptotic freedom. By comparing the ratio of the measured three- and two-particle energy correlator distributions with theoretical calculations that resum collinear emissions at approximate next-to-next-to-leading-logarithmic accuracy matched to a next-to-leading-order calculation, the strong coupling is determined at the 𝑍 boson mass: 𝛼𝑆(𝑚𝑍)=0.1229+0.0040−0.0050, the most precise 𝛼𝑆(𝑚𝑍) value obtained using jet substructure observables.
Measurement of energy correlators inside jets and determination of the strong coupling alpha_s(mZ)
CANDELISE, V.;DE LEO, K.;DELLA RICCA, G.;VAZZOLER, FMembro del Collaboration Group
;SORRENTINO, GMembro del Collaboration Group
2024-01-01
Abstract
Energy correlators that describe energy-weighted distances between two or three particles in a hadronic jet are measured using an event sample of √𝑠=13 TeV proton-proton collisions collected by the CMS experiment and corresponding to an integrated luminosity of 36.3 fb−1. The measured distributions are consistent with the trends in the simulation that reveal two key features of the strong interaction: confinement and asymptotic freedom. By comparing the ratio of the measured three- and two-particle energy correlator distributions with theoretical calculations that resum collinear emissions at approximate next-to-next-to-leading-logarithmic accuracy matched to a next-to-leading-order calculation, the strong coupling is determined at the 𝑍 boson mass: 𝛼𝑆(𝑚𝑍)=0.1229+0.0040−0.0050, the most precise 𝛼𝑆(𝑚𝑍) value obtained using jet substructure observables.File | Dimensione | Formato | |
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PhysRevLett.133.071903.pdf
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