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Effective field theory interpretation of ATLAS measurements involving the Higgs boson, electroweak bosons and the top quark
Journal article   Open access   Peer reviewed

Effective field theory interpretation of ATLAS measurements involving the Higgs boson, electroweak bosons and the top quark

G. Aad, E. Aakvaag, B. Abbott, S. Abdelhameed, K. Abeling, N. J. Abicht, S. H. Abidi, M. Aboelela, A. Aboulhorma, A. Apyan, …
The journal of high energy physics, Vol.2026(7), p.238
07/27/2026
Handle:
https://hdl.handle.net/10192/79974

Abstract

Classical and Quantum Gravitation Elementary Particles Physics and Astronomy Quantum Field Theories Regular Article - Experimental Physics Relativity Theory Physics Quantum Field Theory Quantum Physics String Theory
A bstract Wilson coefficients in dimension-six effective field theory are constrained in a combined fit to several ATLAS measurements. These inputs probe Higgs-boson processes across multiple production and decay modes, di-Higgs signatures in the b b ¯ γγ and b b ¯ ττ final states, WW and WZ diboson signatures, electroweak Zjj final states, high-mass Drell–Yan interactions, and t t ¯ events in both resolved and boosted topologies. Precision electroweak observables from LEP, SLD, and ATLAS are also included. A total of 48 parameters, including individual Wilson coefficients in the Warsaw basis and linear combinations of Wilson coefficients, are constrained simultaneously. Constraints on two-Higgs-doublet models and heavy-vector-boson models are also obtained by matching a relevant sub-set of the results with their parameters. This combined fit provides the most comprehensive effective field theory interpretation of experimental data by the ATLAS Collaboration to date. No significant deviations from the Standard Model are observed.
url
https://doi.org/10.1007/JHEP07(2026)238View
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