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2019:groups:bsm:lfv [2019/11/11 15:40] david.marzocca |
2019:groups:bsm:lfv [2019/11/28 14:54] david.marzocca |
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* SMEFTsim (full SMEFT FeynRules model): https://feynrules.irmp.ucl.ac.be/wiki/SMEFT | * SMEFTsim (full SMEFT FeynRules model): https://feynrules.irmp.ucl.ac.be/wiki/SMEFT | ||
- | //Notes:// [[https://www.dropbox.com/s/o15pnqexv3nmoov/notes.pdf?dl=0|PDF]] | + | //Preliminary proceedings note:// [[https://www.dropbox.com/s/sfhqja1m72xr0ar/dilepton.pdf?dl=0|PDF]] |
//To do:// | //To do:// | ||
- | * Validate our UFO against other codes (e.g. SMEFTsim) (Elena and Jordan) | + | * (Done) Validate our UFO against other codes (e.g. SMEFTsim) (Elena and Jordan) |
* (Done) List the parameter points required to build the complete EFT dependence of the signal | * (Done) List the parameter points required to build the complete EFT dependence of the signal | ||
- | * Clarify the required simulations (only parton level, or also showering) for the 8TeV analysis [1606.01736], which shows double-differential cross sections at the Born level (in QED). (Juhi, Natascia, David) | + | * (Done) Clarify the required simulations (only parton level, or also showering) for the 8TeV analysis [1606.01736], which shows double-differential cross sections at the Born level (in QED). (Dario, Juhi, Natascia) |
* Fix details of the simulations (David, Juhi) | * Fix details of the simulations (David, Juhi) | ||
* Run the simulations for the benchmark points (38 points) | * Run the simulations for the benchmark points (38 points) | ||
+ | * Construct the quadratic dependence on the EFT coefficients in all the bins. | ||
* Build the global likelihood and derive the fit: 1) linear vs. quadratic, 2) including angular distributions vs. not including. | * Build the global likelihood and derive the fit: 1) linear vs. quadratic, 2) including angular distributions vs. not including. | ||
* Consider 13 TeV data | * Consider 13 TeV data |