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Generate large number of models and allow to map where certain signatures are relevant or not eg.

Tool to study power of dilepton signatures. Generate large number of models and allow to map where certain signatures are relevant or not eg. Same flavor (SFDL)/ different flavor dileptons (DFDL) Anything you can imagine, top, EW bosons

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Generate large number of models and allow to map where certain signatures are relevant or not eg.

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  1. Tool to study power of dilepton signatures • Generate large number of models and allow to map where certain signatures are relevant or not eg. • Same flavor (SFDL)/ different flavor dileptons (DFDL) • Anything you can imagine, top, EW bosons • Primary goal: where are SFDL and DFDL relevant, powerful, less powerful,... • Constraints on models from eg. SFDL/DFDL ratio ... • Build tool that generates a ntuple, each entry being a model with relevant quantities • This is very preliminary, mostly I want to get feeling if this is useful work. 1 CSC susy 5 phone meeting- 07/04/23

  2. Principle • Loop over a set of model, for eg. mSUGRA and determine for each model: σ(pp →SUSY)B(SUSY→”interesting final states”) • For each susy model loop determine all σ(pp→X~Y~) • Compute all B(X~ → e/µ/τ/top/W/Z...) • Compute σ(pp →SUSY)B(SUSY→eµ) = Σσ(X~Y~) x B(X~Y~ →eµ) 4) For the time being, some approximations to simplify combinatorics, accuracy ~5% Rely on Isajet 7.74 Sum over all possible SUSY primaries 2 CSC susy 5 phone meeting- 07/04/23

  3. Generate mSUGRA models Random value of m0 and m1/2 tan(β)=10 sgn(µ) >0 A0=0 3 CSC susy 5 phone meeting- 07/04/23

  4. Inclusive SUSY Branching into 0, 1, 2 electrons 4 CSC susy 5 phone meeting- 07/04/23

  5. Inclusive SUSY Branching into 0, 1, 2 muons 5 CSC susy 5 phone meeting- 07/04/23

  6. Inclusive SUSY Branching into 0, 1, 2 taus 6 CSC susy 5 phone meeting- 07/04/23

  7. Inclusive SUSY branching into exactly 1 e + 1 µ 7 CSC susy 5 phone meeting- 07/04/23

  8. Inclusive SUSY branchings B(ee) , B(µµ), B(e), B(µ) /B(eµ) ´8 CSC susy 5 phone meeting- 07/04/23

  9. Inclusive SUSY branchings B(ee) , B(µµ), B(e), B(µ) /B(eµ) • Looks like σB(->eµ) is at least 3 times smaller • than same flavour (ee or µµ) • - Look into details why? • Is this also the case in other SUSY models? • Next steps: • - go to GMSB, AMSB... • - vary sgn(µ), A0, tan(β) • Could this be used to try to exclude mSugra for eg.? 9 CSC susy 5 phone meeting- 07/04/23

  10. Inclusive SUSY branchings B(1 µ) /B(1e) B(1τ) /B(1e) 10 CSC susy 5 phone meeting- 07/04/23

  11. Single to dilepton ratios 11 CSC susy 5 phone meeting- 07/04/23

  12. Top + Z production cross section ~20% of total Susy cross section To be understood! 12 CSC susy 5 phone meeting- 07/04/23

  13. Plan/ Ideas -- Validation with know points / started. -- Look at Sigma x B(->t Z,tW,WZ) , b production, other? -- Generate ATLFAST, fullsim of some interesting points -- eg m0= 500GeV, m1/2=300 GeV with B(->tZ)~20% / in progress -- Study constraints on parameter space imposed by measurements of BR(SUSY->ll’) or BR(l)/BR(ll) .... -- Do the same with AMSB, GMSB, NUHM -- Look into extra dimension models? -- Can we find signatures that would exclude a model? 12 CSC susy 5 phone meeting- 07/04/23

  14. Suggestions/ comments from Giacomo • Use prospino to derive cross sections • M1/2 range is too high in my plot • M0 should go up to 3000GeV (why) • Look into Z production, gives interesting Z+jets+ETmiss signature • In mSUGRA there should not be any difference between electrons and muons • Requiring emu: is a way to cleanly select 2 leptons coming from the opposite branches of the SUSY event? CSC susy 5 phone meeting- 07/04/23

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