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Investigate ratio measurements at LHC to disentangle new physics effects from standard model. Assess different ratios like Rjets and Zinv for direct and indirect searches. Advantages of low and high pT regions. Importance of luminosity and jet energy scale.
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Ratio measurements for indirect searches for new physics • Precision measurements @LHC • Understand theory at level of EW and QCD radiative corrections will be useful for disentangling these effects from new physics • Compare • Low p T and high p T phase space • Agreement at low p T and disagreement at high p T strong evidence for new physics. • Ratio measurements are good for cancelling systematics • Luminosity • Jet energy scale and MET. discuss direct and indirect searches for new physics
First Example: Rjets • Rjets = s(Wln + 1-jet)/s(Zl+ l- + 1-jet) • Low p T region gives calibration • High p T region model independent sensitivity to new physics but easy to think of models which would change Rjets, e.g. • SUSY c±would give more events with one lepton, increase Rjets • SUSY c0 could give more events with two leptons, decrease Rjets discuss direct and indirect searches for new physics
Rjets result from ATLAS • Rjets combined e and m channels • Agreement with SM • Decrease with pT because scale for two processes becomes more similar at high pT. discuss direct and indirect searches for new physics
Other Ratios • More inclusive Rjets, more variables. • Rbjets: same as Rjets with an identified b-jet. • Good for disentangling QCD effects because Wb and Zb very different. • Zinv = s(Znn+ jets)/s(Zl+l-+ jets) • Low pT SM measurement • Deviation at high pT evidence for new physics. • Model independent dark matter search. • Other ratio we could study: s(g + jets)/s(Z + jets). • Sensitive to EW radiative corrections. discuss direct and indirect searches for new physics
Outlook • Ratios provide high precision measurements • Higher energy and luminosity running open up phase space for discovery. discuss direct and indirect searches for new physics