A search for resonances in top quark pair ( tt & horbar;) production in final states with two charged leptons and multiple jets is presented, based on proton-proton collision data collected by the CMS experiment at the CERN LHC at s=13TeV, corresponding to 138 fb-1. The analysis explores the invariant mass of the tt & horbar; system and two angular observables that provide direct access to the correlation of top quark and antiquark spins. A significant excess of events is observed near the kinematic tt & horbar; threshold compared to the non-resonant production predicted by fixed-order perturbative quantum chromodynamics (pQCD). The observed enhancement is consistent with the production of a color-singlet pseudoscalar ( 1S0[1] ) quasi-bound toponium state, as predicted by non-relativistic quantum chromodynamics. Using a simplified model for 1S0[1] toponium, the cross section of the excess above the pQCD prediction is measured to be 8.8-1.4+1.2pb.
Observation of a pseudoscalar excess at the top quark pair production threshold
Cristina Andreea Alexe;Davide Bruschini;
2025
Abstract
A search for resonances in top quark pair ( tt & horbar;) production in final states with two charged leptons and multiple jets is presented, based on proton-proton collision data collected by the CMS experiment at the CERN LHC at s=13TeV, corresponding to 138 fb-1. The analysis explores the invariant mass of the tt & horbar; system and two angular observables that provide direct access to the correlation of top quark and antiquark spins. A significant excess of events is observed near the kinematic tt & horbar; threshold compared to the non-resonant production predicted by fixed-order perturbative quantum chromodynamics (pQCD). The observed enhancement is consistent with the production of a color-singlet pseudoscalar ( 1S0[1] ) quasi-bound toponium state, as predicted by non-relativistic quantum chromodynamics. Using a simplified model for 1S0[1] toponium, the cross section of the excess above the pQCD prediction is measured to be 8.8-1.4+1.2pb.| File | Dimensione | Formato | |
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Collaboration_2025_Rep._Prog._Phys._88_087801.pdf
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