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Description
There are several issues with the MadGraph model. They should be fixed for the second publication.
Lagrangian
- In this model the Hgg form-factors are defined only for q2 > 2mt despite the fact that they are known also below the threshold. Because of this, there is no tail in mtt < 2mt (for the interference, for instance). This is a minor issue.
- Sign of the coupling of the CP-odd state is not standard: mt / v (gH tt̄ - igA tγ5t̄) Φ, while usually gA is used with the opposite sign. Though the sign is not visible unless couplings to other particles are considered.
Model parameters
- Widths of the top quark and W boson written to the
param_cardby default, which are defined here, are not consistent with their default masses. This leads to wrong cross sections when these particles are decayed. See discussion in these slides. - It is not possible to let MadGraph compute widths of the top quark and the W boson by setting them to
autoas this leads to an error:An apparently similar problem was discussed here, but I haven't investigated.compute_widths 24 6 --precision_channel=0.01 --body_decay=4.0025 --path=/gridgroup/cms/popov/Analyses/HToTT/2017.08.23_Analytical-results/MadGraph/PROC_Massive_Higgs_UFO_4/Cards/param_card.dat --output=/gridgroup/cms/popov/Analyses/HToTT/2017.08.23_Analytical-results/MadGraph/PROC_Massive_Higgs_UFO_4/Cards/param_card.dat Please note that the automatic computation of the width is only valid in narrow-width approximation and at tree-level. INFO: Get two body decay from FeynRules formula Results written to /gridgroup/cms/popov/Analyses/HToTT/2017.08.23_Analytical-results/MadGraph/PROC_Massive_Higgs_UFO_4/Cards/param_card.dat INFO: get decay diagram for w+ Vertexlist of this model has not been searched.Automatically run the model.find_vertexlist() Found 1 stable particles Command "generate_events run_03" interrupted in sub-command: "set max_npoint_for_channel 0" with error: NameError : name 'ggH0' is not defined - Values chosen for mZ, GF, and αem give the W boson a mass of around 79.8 GeV. Since the signal process involves W bosons but is not sensitive to the fine-structure constant, should better change the input value of αem(mZ) from its measurement (approximately 1/127.9) to an effective value that gives mW ≈ 80.4 GeV (would be about 1/132.5).
- Should consider switching to massless leptons and light-flavour quarks and a diagonal CKM matrix in the model. It simplifies definition of exclusive final states and equalizes decays of W bosons. Not strictly needed though.
- Should update other theory parameters to values that are actually used for event generation, e.g. mt = 172.5 GeV, so that the need for manual changes is minimized.
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