paper

Higgs Boson CP Properties and Effective Field Theory Measurements from the ATLAS Experiment at the LHC

arXiv:2512.13226

Abstract

This proceedings presents a concise overview of the Higgs boson's charge-conjugation and parity (CP) properties and constraints on Effective Field Theory (EFT) operators, derived from the ATLAS experiment at the Large Hadron Collider (LHC). Using proton$\textendash$proton collision data with integrated luminosities of up to 140 fb at TeV, the ATLAS collaboration systematically probe the CP nature of the Higgs boson's couplings to fermions ( leptons, bottom quarks, and top quarks) and bosons (, , and ) across diverse decay final states. The EFT framework is used to parameterize Beyond the Standard Model (BSM) effects via dimension-6 operators, enabling model-independent constraints on CP violation and new physics scales. The main focus is comparison of measurement characteristics and sensitivity across different final states: (1) (semileptonic/hadronic decays) for light fermion couplings; (2) and in processes for heavy fermion couplings; (3) , , and vector boson fusion (VBF) for boson couplings; and (4) double Higgs () production for self-couplings. All measurements are consistent with the Standard Model (SM) prediction of a CP-even Higgs boson (), with no evidence of CP violation. The most stringent constraint on the CP-odd EFT parameter is obtained from VBF ( at 95\% CL), highlighting the unique sensitivity of this channel. Complementary constraints from other final states reinforce the robustness of SM consistency and provide a foundation for future searches.

5 pages, 1 figure, presented at the 32nd International Symposium on Lepton Photon Interactions at High Energies, Madison, Wisconsin, USA, August 25-29, 2025