arXiv:2509.13193·v1·High Energy Physics — Phenomenology
Searching for heavy resonances via oblique parameters in non-linear effective frameworks
Ignasi Rosell🇪🇸 · Antonio Pich🇪🇸 · Juan Jose Sanz-Cillero🇪🇸
Abstract
Within the framework of a general non-linear effective field theory describing the electroweak symmetry breaking, we perform a detailed analysis of the next-to-leading contributions to the electroweak oblique parameters and from hypothetical heavy resonance states strongly coupled to Standard Model fields. This work extends our previous results by including parity-odd operators in the effective Lagrangian, contributions from fermionic cuts, and up-to-date experimental constraints. We demonstrate that in strongly-coupled ultraviolet completions satisfying both Weinberg Sum Rules -- as is the case in asymptotically free gauge theories -- the vector and axial-vector resonance masses are constrained to lie above TeV. Conversely, scenarios allowing for lighter resonances with masses between and TeV necessarily imply a violation of the second Weinberg Sum Rule.
Comments: 8 pages, 1 figure. Talk given at the The European Physical Society Conference on High Energy Physics - EPS-HEP2025 (7-11 July 2025, Marseille, France)